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1 model following control system
Строительство: система управления с эталонной модельюУниверсальный англо-русский словарь > model following control system
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2 model-following control system
Englsh-Russian aviation and space dictionary > model-following control system
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3 model-following control
English-Russian big polytechnic dictionary > model-following control
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4 system
система; установка; устройство; ркт. комплекс"see to land" system — система посадки с визуальным приземлением
A.S.I. system — система указателя воздушной скорости
ablating heat-protection system — аблирующая [абляционная] система тепловой защиты
ablating heat-shield system — аблирующая [абляционная] система тепловой защиты
active attitude control system — ксм. активная система ориентации
aft-end rocket ignition system — система воспламенения заряда с задней части РДТТ [со стороны сопла]
aircraft response sensing system — система измерений параметров, характеризующих поведение ЛА
air-inlet bypass door system — дв. система перепуска воздуха на входе
antiaircraft guided missile system — ракетная система ПВО; зенитный ракетный комплекс
antiaircraft guided weapons system — ракетная система ПВО; зенитный ракетный комплекс
attenuated intercept satellite rendez-vous system — система безударного соединения спутников на орбите
attitude and azimuth reference system — система измерения или индикации углов тангажа, крена и азимута
automatic departure prevention system — система автоматического предотвращения сваливания или вращения после сваливания
automatic drift kick-off system — система автоматического устранения угла упреждения сноса (перед приземлением)
automatic hovering control system — верт. система автостабилизации на висении
automatic indicating feathering system — автоматическая система флюгирования с индикацией отказа (двигателя)
automatic mixture-ratio control system — система автоматического регулирования состава (топливной) смеси
automatic pitch control system — автомат тангажа; автоматическая система продольного управления [управления по каналу тангажа]
B.L.C. high-lift system — система управления пограничным слоем для повышения подъёмной силы (крыла)
backpack life support system — ксм. ранцевая система жизнеобеспечения
beam-rider (control, guidance) system — ркт. система наведения по лучу
biowaste electric propulsion system — электрический двигатель, работающий на биологических отходах
buddy (refueling, tank) system — (подвесная) автономная система дозаправки топливом в полете
closed(-circuit, -cycle) system — замкнутая система, система с замкнутым контуром или циклом; система с обратной связью
Cooper-Harper pilot rating system — система баллов оценки ЛА лётчиком по Куперу — Харперу
deployable aerodynamic deceleration system — развёртываемая (в атмосфере) аэродинамическая тормозная система
depressurize the fuel system — стравливать избыточное давление (воздуха, газа) в топливной системе
driver gas heating system — аэрд. система подогрева толкающего газа
dry sump (lubrication) system — дв. система смазки с сухим картером [отстойником]
electrically powered hydraulic system — электронасосная гидросистема (в отличие от гидросистемы с насосами, приводимыми от двигателя)
exponential control flare system — система выравнивания с экспоненциальным управлением (перед приземлением)
flywheel attitude control system — ксм. инерционная система ориентации
gas-ejection attitude control system — ксм. газоструйная система ориентация
gas-jet attitude control system — ксм. газоструйная система ориентация
ground proximity extraction system — система извлечения грузов из самолёта, пролетающего на уровне земли
hot-air balloon water recovery system — система спасения путем посадки на воду с помощью баллонов, наполняемых горячими газами
hypersonic air data entry system — система для оценки аэродинамики тела, входящего в атмосферу планеты с гиперзвуковой скоростью
igh-temperature fatigue test system — установка для испытаний на выносливость при высоких температурах
interceptor (directing, vectoring) system — система наведения перехватчиков
ion electrical propulsion system — ксм. ионная двигательная установка
isotope-heated catalytic oxidizer system — система каталитического окислителя с нагревом от изотопного источника
jet vane actuation system — ркт. система привода газового руля
laminar flow pumping system — система насосов [компрессоров] для ламинаризации обтекания
launching range safety system — система безопасности ракетного полигона; система обеспечения безопасности космодрома
leading edge slat system — система выдвижных [отклоняемых] предкрылков
low-altitude parachute extraction system — система беспосадочного десантирования грузов с малых высот с использованием вытяжных парашютов
magnetic attitude control system — ксм. магнитная система ориентации
magnetically slaved compass system — курсовая система с магнитной коррекцией, гироиндукционная курсовая система
mass-expulsion attitude control system — система ориентации за счёт истечения массы (газа, жидкости)
mass-motion attitude control system — ксм. система ориентации за счёт перемещения масс
mass-shifting attitude control system — ксм. система ориентации за счёт перемещения масс
monopropellant rocket propulsion system — двигательная установка с ЖРД на унитарном [однокомпонентном] топливе
nucleonic propellant gauging and utilization system — система измерения и регулирования подачи топлива с использованием радиоактивных изотопов
open(-circuit, -cycle) system — открытая [незамкнутая] система, система с незамкнутым контуром или циклом; система без обратной связи
plenum chamber burning system — дв. система сжигания топлива во втором контуре
positioning system for the landing gear — система регулирования высоты шасси (при стоянке самолёта на земле)
radar altimeter low-altitude control system — система управления на малых высотах с использованием радиовысотомера
radar system for unmanned cooperative rendezvous in space — радиолокационная система для обеспечения встречи (на орбите) беспилотных кооперируемых КЛА
range and orbit determination system — система определения дальностей [расстояний] и орбит
real-time telemetry processing system — система обработки радиотелеметрических данных в реальном масштабе времени
recuperative cycle regenerable carbon dioxide removal system — система удаления углекислого газа с регенерацией поглотителя, работающая по рекуперативному циклу
rendezvous beacon and command system — маячно-командная система обеспечения встречи («а орбите)
satellite automatic terminal rendezvous and coupling system — автоматическая система сближения и стыковки спутников на орбите
Schuler tuned inertial navigation system — система инерциальной навигации на принципе маятника Шулера
sodium superoxide carbon dioxide removal system — система удаления углекислого газа с помощью надперекиси натрия
space shuttle separation system — система разделения ступеней челночного воздушно-космического аппарата
stellar-monitored astroinertial navigation guidance system — астроинерциальная система навигации и управления с астрокоррекцией
terminal control landing system — система управления посадкой по траектории, связанной с выбранной точкой приземления
terminal descent control system — ксм. система управления на конечном этапе спуска [снижения]
terminal guidance system for a satellite rendezvous — система управления на конечном участке траектории встречи спутников
test cell flow system — ркт. система питания (двигателя) топливом в огневом боксе
vectored thrust (propulsion) system — силовая установка с подъёмно-маршевым двигателем [двигателями]
water to oxygen system — ксм. система добывания кислорода из воды
wind tunnel data acquisition system — система регистрации (и обработки) данных при испытаниях в аэродинамической трубе
— D system -
5 model
модель, макет, моделировать, макетировать, тип, образец, эталон
– model behavior
– model data
– model database
– model experiment
– model formulation
– model identification
– model knowledge
– model library
– model matching
– model production
– model reference adaptive control
– model refinement
– model shop
– model structure
– model study
– model synthesis
– model test
– model validation
– model validity
– model-based
– model-based compensation
– model-based reasoning
– model-based system
– model-based vision system
– model-following control
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6 control
1. управление; регулирование; управляемость; стабилизация/ управлять; регулировать2. управляющее устройство; регулятор; орган управления, средство управления; рычаг управления; поверхность управления, руль3. <pl> система управления; система регулирования4. управляющее воздействие, управление; отклонение органа управления; перемещение рычага управления5. контроль6. подавление <напр. колебаний>; предотвращениесм. тж. control,control in the pitch axis4-D controlacceleration controladaptable controladaptive controlaerodynamic controlaeroelastic controlaileron controlair traffic controlairborne controlaircraft controlairspeed controlall-mechanical controlsantispin controlsapproach controlarea controlarrival controlattitude controlaugmented controlsautopilot controlbang-bang controlbank-to-turn controlbimodal controlboundary layer controlbounded controlBTT controlbuoyancy controlbus controlCG controlcable controlcable-operated controlscamber controlcaptain`s controlscenter-of-gravity controlchattering controlclearance controlclosed-loop controlclosed-loop controlscockpit controlcockpit controlscollective controlcollective-pitch controlcolocated controlcompensatory controlconfiguration controlcontinuous controlcooperative controlcoordinated controlscorrosion controlcross controlscrowd controlcruise camber controlcyclic controlcyclic pitch controldamper-induced controldamping controldecentralized controldecoupled controldeformable controlsdeformation controldescent controldifferential controldigital controldirect force controldirect lateral force controldirect lift controldirect lift controlsdirect sideforce controldirect sideforce controlsdirectional controldirectional attitude controldirectional flight path controldiscontinuous controldiscrete controldisplacement controldistributed controldivergence controldrag controldual controlelastic mode controlelectrical signalled controlelevator controlen route air traffic controlengine controlserror controlevader controlFBW controlsfeedback controlfighter controlfinal controlfine controlfinger-on-glass controlfingertip controlfinite-time controlfixed-wing controlflap controlFlettner controlflight controlflight controlsflight path controlflow controlfluidic controlflutter controlflutter mode controlfly-by-glass controlfly-by-light controlsfly-by-wire controlsflying controlflying controlsforce controlforce sensitive controlforce sensitive controlsforebody controlsfountain controlfracture controlfriend/foe controlfuel controlfuel distribution controlfuel efficient controlfuel feed controlfull controlfull nose-down controlfull nose-down to full nose-up controlfull-authority controlfull-authority controlsfull-state controlfull-time fly-by-wire controlgain-scheduled controlglide path controlglideslope controlground-based controlharmonized controlshead-out controlhead-up controlheading controlheld controlshierarchical controlhigh-alpha controlhigh-angle-of-attack controlhigh-bandpass controlhigh-bandwidth controlhigh-speed controlhigher harmonic controlhigher harmonic controlshighly augmented controlsHOTAS controlshover mode controlhovering controlhydromechanical controlin-flight controlindividual blade controlindividual flap cruise camber controlinfra-red emissions controlinner-loop controlinput controlinput/output controlintegral controlintegrated controlinteractive controlsintercom/comms controlsirreversible controljet reaction controlkeyboard controlkeyboard controlsknowledge-based controllaminar flow controllateral controllateral-directional controlleading-edge controlsleft controlLiapunov optimal controllinear quadratic Gaussian controllinear quadratic regulator controlload factor controllongitudinal controllongitudinal cyclic controllow-bandwidth controllow-speed controlLQG controlLyapunov optimal controlmaneuver controlmaneuver camber controlmaneuver load controlmaneuvering controlmanual controlmass-flow controlmicroprocessor based controlMIMO controlminimax optimal controlminimum time controlminimum variance controlmisapplied controlsmission-critical controlmixing controlmodal controlmode controlsmodel-following controlmotion controlmultiaxis controlmultiple model controlmultiple-axis controlmultiple-input/multiple-output controlmultisurface controlmultivariable controlneutral controlsnoise controlnoninertial controlnonlinear feedback controlnonunique controlnose-down controlnose-down pitch controlopen-loop controlopen-loop controlsoptimal controlouter-loop controloxygen controlsperformance seeking controlperiodic controlperturbational controlpilot controlpilot-induced oscillation prone controlpiloting controlpiloting controlspitch controlpitch plane controlpitch-recovery controlpneumatic controlpneumodynamic controlpointing controlpositive controlpost stall controlpower controlpowered controlpredictive controlpressurization controlpreview controlpro-spin controlspropeller controlpropeller controlsproportional plus integral controlpropulsion controlspropulsion system controlspursuer controlpursuit controlradio controlsrate controlrate controlsratio-type controlsreaction controlreconfigurable controlsrecovery controlrecovery controlsreduced order controlrelay controlremote pilot controlresponsive controlrestructurable controlreverse controlreversed controlride controlrigid body controlrobust controlroll controlroll attitude controlroll-axis controlrotational controlrotor controlrudder controlrudder controlsrudder-only controlsea controlself-tuning controlsequence controlservo controlservo-flap controlservo-flap controlsshock controlshock wave/boundary layer controlshort period response controlsideforce controlsidestick controlsidestick controlssight controlssignature controlsingle-axis controlsingle-engine controlsingle-lever controlsingular perturbation optimal controlsix degree-of-freedom controlslew controlslewing controlsliding mode controlssmoothed controlsnap-through controlsoftware-intensive flight controlsspace structure controlstation keeping controlstepsize controlstiffness control of structurestochastic controlstructural controlstructural mode controlsuboptimal controlsuction boundary layer controlsuperaugmented controlswashplate controlsweep controlsystems controltactical controlstail controltail rotor controltailplane controltask-oriented controltask-tailored controltaxying controlterminal controlthin controlthree-surface controlthrottle controlthrust controlthrust magnitude controltight controltilt controltime-of-arrival controltime-optimal controltime/fuel optimal controltip clearance controlto regain controltorque controltorque controlstrailing-edge controlstransient controltranslational controltri-surface controltrim controlturn coordination controlupfront controlupward-tilted controlvariable structure controlvectorial controlvehicular controlvelocity controlvertical controlvibration controlvoice actuated controlsvortex controlvortex manipulation controlvortex-lift controlwing-mounted controlsyaw control -
7 system
system of axes3-component LDV system3-D LDV system4-D system4-D flight-management system4-D guidance systemAC electrical systemactuation systemaerial delivery systemaerostat systemAEW systemafterburning control systemAI-based expert systemaileron-to-rudder systemair bleed offtake systemair cushion systemair cycle systemair data systemair defence systemair induction systemair refueling systemair traffic control systemair-combat advisory systemair-conditioning systemair-path axis systemair-turbine starting systemairborne early warning systemaircooling systemaircraft reference axis systemaircraft weight-and-balance measuring systemaircraft-autopilot systemaircraft-based systemaircraft-bifilar-pendulum systemaircraft-carried earth axis systemaircraft-carried normal earth axis systemaircrew escape systemairfield lighting control systemairframe/rotor systemairspeed systemalcohol-wash systemalignment control systemall-electronic systemall-weather mission systemaltitude loss warning systemangle-of-attack command systemanti-collision systemanti-g systemantitorque systemanti-icing systemantiskid systemarea-navigation systemARI systemartificial feel systemartificial intelligence-based expert systemartificially augmented flight control systemATC systemattitude and heading reference systemaudio systemaudiovisual systemauto-diagnosis systemauto-hover systemautolanding systemautomatic cambering systemautomatic trim systemautostabilization systemautotrim systemaxis systemB systembalance-fixed coordinate systembase-excited systembasic axis systembeam-foundation systembifilar pendulum suspension systembladder systemblowing systemblowing boundary layer control systemblown flap systembody axis systembody axis coordinate systembody-fitted coordinate systembody-fixed reference systemboom systemboosted flight control systembraking systembreathing systembuddy-buddy refuelling systemcabin pressurization systemcable-mount systemCAD systemcanopy's jettison systemcardiovascular systemcargo loading systemcargo-handling systemcarrier catapult systemcartesian axis systemCat III systemcentral nervous systemCGI systemcirculating oil systemclosed cooling systemclosed-loop systemcockpit systemcockpit management systemcollision avoidance systemcombined cooling systemcommand-by-voice systemcommand/vehicle systemcommercial air transportation systemcompensatory systemcomputer-aided design systemcomputer-assisted systemcomputer-generated image systemcomputer-generated visual systemconcentrated-mass systemconflict-alert systemconservative systemconstant bandwidth systemconstant gain systemconsultative expert systemcontrol systemcontrol augmented systemcontrol loader systemcooling systemcoordinate systemcounterstealth systemcoupled systemcoupled fire and flight-control systemcovert mission systemcrew systemscueing systemcurvilinear coordinate systemdamped systemdata systemdata acquisition systemdata handling systemdata transfer systemdata-gathering systemDC electrical systemdecision support systemdefensive avionics systemdeicing systemdemisting systemdeparture prevention systemdeterministic systemdual-dual redundant system4-D navigation system6-DOF motion systemdiagnosable systemdial-a-flap systemdirect impingement starting systemdisplacement control systemdisplay systemdisplay-augmented systemdivergent systemDLC systemdogfight systemdoor-to-door systemDoppler ground velocity systemdouble-balance systemdrive systemdrive train/rotor systemdry air refueling systemdual-field-of-view systemdual-wing systemdynamic systemearly-warning systemEarth-centered coordinate systemearth-fixed axis systemearth/sky/horizon projector systemejection systemejection display systemejection seat escape systemejection sequence systemejector exhaust systemejector lift systemelection safety systemelectric starting systemelectro-expulsive deicing systemelectro-impulse deicing systemelectro-vibratory deicing systemelectronic flight instrumentation systemElint systememergency power systememitter locator systemEMP-protected systemengine monitoring systemengine-propeller systemengine-related systemenhanced lift systemenvelope-limiting systemenvironmental control systemescape systemexcessive pitch attitude warning systemexhaust systemFADEC systemfault-tolerant systemFBW systemfeathering systemfeedback systemfeel systemfin axis systemfire detection systemfire suppression systemfire-extinguishing systemfire-protection systemfive-point restraint systemfixed-structure control systemflap systemflap/slat systemflash-protection systemflexible manufacturing systemflight control systemflight control actuation systemflight director systemflight inspection systemflight management systemflight path systemflight path axis systemflight test systemflight-test instrumentation systemflotation systemfluid anti-icing systemflutter control systemflutter margin augmentation systemflutter suppression systemfluttering systemfly-by-light systemfly-by-light control systemfly-by-wire systemfly-by-wire/power-by-wire control systemfoolproof systemforce-excited systemforce-feel systemforward vision augmentation systemfuel conservative guidance systemfuel management systemfuel transfer systemfull-vectoring systemfull-authority digital engine control systemfull-motion systemfull-state systemfull-time systemfully articulated rotor systemfuselage axis systemg-command systemg-cueing systemg-limiting systemgas generator control systemgas turbine starting systemglobal positioning systemgoverning systemground collision avoidance systemground proximity warning systemground-axes systemground-fixed coordinate systemground-referenced navigation systemgust alleviation systemgust control systemgyroscopic systemgyroscopically coupled systemhalon fire-extinguishing systemhalon gas fire-fighting systemhands-off systemhead-aimed systemheadup guidance systemhelmet pointing systemhelmet-mounted visual systemhierarchical systemhigh-damping systemhigh-authority systemhigh-lift systemhigh-order systemhigh-pay-off systemhigh-resolution systemhigher harmonic control systemhose-reel systemhot-gas anti-icing systemhub plane axis systemhub plane reference axis systemhub-fixed coordinate systemhydraulic systemhydraulic starting systemhydropneumatic systemhydrostatic motion systemhysteretic systemice-protection systemicing cloud spray systemicing-protection systemidentification friend or foe systemimage generator systemin-flight entertainment systemincidence limiting systeminert gas generating systeminertial coordinate systeminertial navigation systeminertial reference systeminfinite-dimensional systeminformation management systeminlet boundary layer control systeminlet control systeminput systeminstruction systeminstrument landing systeminstrumentation systemintelligence systemintelligent systeminterconnection systemintermediate axis systemintrusion alarm systemintrusion detection systeminverted fuel systemlanding guidance systemlarge-travel motion systemlaser-based visual systemlateral attitude control systemlateral control systemlateral feel systemlateral seat restraint systemlateral-directional stability and command augmentation systemlead compensated systemleft-handed coordinate systemleg restraint systemlife support systemliferaft deployment systemlift-distribution control systemlighter-than-air systemlightly damped systemlightning protection systemlightning sensor systemlightning warning systemlimited-envelope flight control systemlinear vibrating systemliquid oxygen systemload control systemload indication systemlocal-horizon systemloom systemlow-damping systemlow-order systemLQG controlled systemlubrication systemlumped parameter systemMach number systemmain transmission systemmaintenance diagnostic systemmaintenance record systemman-in-the-loop systemman-machine systemmaneuver demand systemmaneuvering attack systemmass-spring-dashpot systemmass-spring-damper systemmast-mounted sight systemmechanical-hydraulic flight control systemmicrowave landing systemMIMO systemmine-sweeping systemmissile systemmissile-fixed systemmission-planning systemmobile aircraft arresting systemmodal cancellation systemmodal suppression systemmode-decoupling systemmodel reference systemmodel-based visual systemmodel-following systemmodelboard systemmolecular sieve oxygen generation systemmonopulse systemmotion systemmotion generation systemmulti-input single-output systemmulti-input, multi-output systemmultimode systemmultibody systemmultidegree-of-freedom systemmultiloop systemmultiple-input single output systemmultiple-input, multiple-output systemmultiple-loop systemmultiple-redundant systemmultiply supported systemmultishock systemmultivariable systemnavigation management systemnavigation/attack systemnavigation/bomb systemNDT systemneuromuscular systemnight/dusk visual systemportable aircraft arresting systemnitrogen inerting systemno-tail-rotor systemnonminimum phase systemnonoscillatory systemnonconservative systemnormal earth-fixed axis systemNotar systemnozzle control systemnuclear-hardened systemobserver-based systemobstacle warning systemoil systemon-board inert gas generation systemon-board maintenance systemon-board oxygen generating systemon-off systemone degree of freedom systemone-shot lubrication systemopen cooling systemopen seat escape systemopen-loop systemoperability systemoptic-based control systemoptimally controlled systemorthogonal axis systemoxygen generation systemparachute systempartial vectoring systempartial vibrating systemperformance-seeking systemperturbed systempilot reveille systempilot vision systempilot-aircraft systempilot-aircraft-task systempilot-in-the-loop systempilot-manipulator systempilot-plus-airplane systempilot-vehicle-task systempilot-warning systempilot/vehicle systempitch change systempitch compensation systempitch stability and command augmentation systempitch rate systempitch rate command systempitch rate flight control systempneumatic deicing systempneumatic ice-protection systempneumodynamic systemposition hold systempower systempower-assisted systempower-boosted systempowered high-lift systempowered-lift systemprecognitive systempressurization systempreview systemprobabilistically diagnosable systemprobe refuelling systempronated escape systempropeller-fixed coordinate systempropulsive lift systemproximity warning systempursuit systempush-rod control systemquantized systemrandom systemrating systemreconfigurable systemrectangular coordinate systemreduced-gain systemreference axis systemrefuelling systemremote augmentor lift systemremote combustion systemresponse-feedback systemrestart systemrestraint systemrestructurable control systemretraction systemride-control systemride-quality systemride-quality augmentation systemride-smoothing systemright-handed axis systemright-handed coordinate systemrigid body systemrobotic refueling systemrod-mass systemroll augmentation systemroll rate command systemrotating systemrotor systemrotor isolation systemrotor-body systemrotor-wing lift systemroute planner systemrudder trim systemrudder-augmentation systemsampled-data systemscheduling systemschlieren systemsea-based systemseat restraint systemseatback video systemself-adjoint systemself-contained starting systemself-diagnosable systemself-excited systemself-repairing systemself-sealing fuel systemself-tuning systemshadow-mask systemshadowgraph systemship-fixed coordinate systemshock systemshort-closed oil systemsighting systemsimulation systemsimulator-based learning systemsingle degree of freedom systemsingle-input multiple-output systemsingularly perturbed systemsituational awareness systemsix-axis motion systemsix-degree-of-freedom motion systemsix-puck brake systemski-and-wheel systemskid-to-turn systemsnapping systemsoft mounting systemsoft ride systemsound systemspeed-stability systemspherical coordinate systemspin recovery systemspin-prevention systemspring-mass-dashpot systemstability and control augmentation systemstability augmentation systemstability axis coordinate systemstability enhancement systemstall detection systemstall inhibitor systemstall protection systemstall warning systemstarting systemstealth systemstochastic systemstorage and retrieval systemstore alignment systemstores management systemstrap-down inertial systemstructural systemstructural-mode compensation systemstructural-mode control systemstructural-mode suppression systemSTT systemsuppression systemsuspension systemtactile sensory systemtail clearance control systemtail warning systemtask-tailored systemterrain-aided navigation systemterrain-referencing systemtest systemthermal control systemthermal protection systemthreat-warning systemthree-axis augmentation systemthree-body tethered systemthree-control systemthree-gyro systemthrough-the-canopy escape systemthrust modulation systemthrust-vectoring systemtilt-fold-rotor systemtime-invariant systemtime-varying systemtip-path-plane coordinate systemtorque command/limiting systemtractor rocket systemtrailing cone static pressure systemtraining systemtrajectory guidance systemtranslation rate command systemtranslational acceleration control systemtrim systemtrim tank systemtriple-load-path systemtutoring systemtwin-dome systemtwo degree of freedom systemtwo-body systemtwo-input systemtwo-input two-output systemtwo-pod systemtwo-shock systemtwo-step shock absorber systemunpowered flap systemunpowered high-lift systemutility services management systemvapor cycle cooling systemvariable feel systemvariable stability systemvariable structure systemvestibular sensory systemvibrating systemvibration isolation systemvibration-control systemvibration-damping systemvideo-disc-based visual systemvisor projection systemvisual systemvisual display systemvisual flying rules systemvisual sensory systemvisual simulation systemvisually coupled systemvoice-activated systemvortex systemvortex attenuating systemVTOL control systemwake-imaging systemwarning systemwater injection cooling systemwater-mist systemwater-mist spray systemweather systemwheel steering systemwide angle visual systemwind coordinate systemwind shear systemwind-axes systemwind-axes coordinate systemwind-fixed coordinate systemwing axis systemwing flap systemwing sweep systemwing-load-alleviation systemwing-mounted systemwing/propulsion systemwiring systemyaw vane system -
8 control
управление; регулирование; контроль; орган [рычаг] управления; руль; pl. система управления или регулирования; управлять; регулироватьback seat flight control — управление ЛА из задней кабины [с места заднего лётчика]; pl. дублирующие органы управления в задней кабине
be out of control — терять управление [управляемость]; выходить из-под управления [контроля]
continuously variable thrust control — плавное [бесступенчатое] регулирование тяги
control c.g. control — регулирование центровки (ЛА)
control of missile attitude — стабилизация ракеты; управление пространственным положением ракеты
control of the air — превосходство или господство в воздухе; превосходство в области авиации [в авиационной технике]; контроль воздушного пространства
control of the yoke — разг. управление штурвалом
control of thrust orientation — управление ориентированием [направлением вектора] тяги
flight deck lighting controls — органы управления [ручки регулировки] освещением кабины экипажа
fling the controls over — перебрасывать органы управления (в противоположную сторону),
flow control with altitude compensation — регулятор расхода [подачи] с высотным корректором
fuel dump valve control — кран [рычаг крана] аварийного слива топлива
gas jet attitude control — управление пространственным положением с помощью системы газоструйных рулей
go out of control — терять управление, выходить из-под управления [контроля]
ground rollout rudder steering control — управление пробегом [на пробеге] с помощью руля направления
interconnected fuel and propeller controls — объединённая система регулирования подачи топлива и шага винта
jet tab thrust vector control — управление вектором тяги с помощью газовых рулей; дефлекторное управление вектором тяги
jet(-deflection, -direction) control — реактивное [струйное] управление; управление изменением направления тяги; струйный руль
manual mixture shut-off control — рычаг отсечки подачи горючей смеси, рычаг останова [выключения] двигателя
maximum boundary layer control — управление пограничным слоем при наибольшей эффективности [производительности, интенсивности работы] системы
recover the control — восстанавливать управление [управляемость]
respond to the controls — реагировать [отвечать] на отклонение рулей [органов управления]
space shuttle orbiter control — управление орбитальной ступенью челночного воздушно-космического аппарата
throttle and collective pitch control — верт. рычаг «шаг — газ»
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9 aircraft
aircraft nвоздушное судноabandon an aircraftпокидать воздушное судноabandoned aircraftвоздушное судно, исключенное из реестраaccident to an aircraftпроисшествие с воздушным судномaccommodate an aircraftразмещать воздушное судноactive aircraftэксплуатируемое воздушное судноafter an aircraftдорабатывать конструкцию воздушного суднаageing aircraftизнос воздушного суднаairborne aircraftвоздушное судно, находящееся в воздухеaircraft acceleration factorкоэффициент перегрузки воздушного суднаaircraft acceleration testsиспытания воздушного судна на перегрузкиaircraft accessory gear boxкоробка приводов самолетных агрегатовaircraft ageсрок службы воздушного суднаaircraft alert positionсостояние готовности воздушного судна к вылетуaircraft alternate-stress testsиспытания воздушного судна на переменные нагрузкиaircraft anticollision deviceприбор предупреждения столкновений воздушных судовaircraft assembly jigсборочный стапель воздушного суднаaircraft axisось симметрии воздушного суднаaircraft balance diagramцентровочный график воздушного суднаaircraft basic specificationsосновные технические данные воздушного суднаaircraft bearingпеленг воздушного суднаaircraft behaviorповедение воздушного суднаaircraft blind transmissionпередача воздушного суднаaircraft braking performanceтормозная характеристика воздушного суднаaircraft breakawayстрагивание воздушного суднаaircraft breakdownвесовая классификация воздушного суднаaircraft call signпозывной код воздушного суднаaircraft capacityвместимость воздушного суднаaircraft capacity rangeпредел коммерческой загрузки воздушного суднаaircraft cargo lashingшвартовка груза на воздушном суднеaircraft categoryвид воздушного суднаaircraft category ratingклассификация воздушных судов по типамaircraft center lineосевая линия воздушного суднаaircraft center - of - gravityцентровка воздушного суднаaircraft certificateсертификат воздушного суднаaircraft certificate holderвладелец сертификата на воздушное судноaircraft classificationклассификация воздушных судовaircraft clockбортовой синхронизаторaircraft commanderкомандир воздушного суднаaircraft commissioning testsэксплуатационные испытания воздушного суднаaircraft communication equipmentбортовое связное оборудованиеaircraft companyфирма по производству воздушных судовaircraft componentэлемент конструкции воздушного суднаaircraft containerконтейнер для перевозки грузов и багажа на воздушном суднеaircraft control lossпотеря управляемости воздушного суднаaircraft control marginзапас управляемости воздушного суднаaircraft control systemсистема управления воздушным судномaircraft control transferпередача управления воздушным судномaircraft cost levelсебестоимость воздушного суднаaircraft courseкурс воздушного суднаaircraft customerзаказчик воздушного суднаaircraft deckпол кабины воздушного суднаaircraft decompressionразгерметизация воздушного суднаaircraft defects listведомость дефектов воздушного суднаaircraft deliveryпоставка воздушных судовaircraft depotавиационная базаaircraft designконструкция воздушного суднаaircraft designerавиаконструкторaircraft design loadрасчетный предел нагрузки воздушного суднаaircraft development plantопытная авиационный заводaircraft dimension toleranceдопуск на размеры воздушного суднаaircraft ditchingвынужденная посадка воздушного судна на водуaircraft documentsбортовая документацияaircraft dry leaseаренда воздушного судна без экипажаaircraft dryleaseаренда воздушного судна без экипажаaircraft earthingзаземление воздушного суднаaircraft electrical failureотказ электросистемы воздушного суднаaircraft electric systemэлектросистема воздушного суднаaircraft electrificationосветительное оборудование воздушного суднаaircraft embodyпроводить доработку воздушного суднаaircraft emergencyаварийная ситуация с воздушным судномaircraft emergency locator beaconбортовой аварийный приводной маякaircraft employmentэксплуатация воздушного суднаaircraft empty weightмасса пустого воздушного суднаaircraft endurance testsресурсные испытания воздушного суднаaircraft environmental testиспытание воздушного судна в термобарокамереaircraft equipmentбортовое оборудованиеaircraft equipment overhaulремонт оборудования воздушного суднаaircraft escape chuteаварийный бортовой трап - лотокaircraft evacuation meansсредства эвакуации воздушного суднаaircraft evolutionэволюция воздушного суднаaircraft factoryавиационный заводaircraft fatigue lifeусталостный ресурс воздушного суднаaircraft fire pointочаг пожара на воздушном суднеaircraft first costсебестоимость производства воздушного суднаaircraft fixместоположение воздушного суднаaircraft fixed equipmentбортовое стационарное оборудованиеaircraft fix latitudeширота местонахождения воздушного суднаaircraft fixtureстапель для сборки воздушного суднаaircraft flashзасветка воздушного суднаaircraft fleetпарк воздушных судовaircraft fleet turnoverоборот парка воздушных судовaircraft flight reportполетный лист воздушного суднаaircraft flyingполеты воздушных судовaircraft freightгруз, перевозимый воздушным судномaircraft fuel consumptionрасход топлива воздушным судномaircraft fuel quantityзапас топлива воздушного суднаaircraft fuel supplyподача топлива в систему воздушного суднаaircraft galleyбортовая кухня воздушного суднаaircraft generationпоколение воздушных судовaircraft geometryконтуры воздушного суднаaircraft handlingуправление воздушным судномaircraft hardwareприборное оборудование воздушного суднаaircraft headingкурс воздушного суднаaircraft heaterаэродромный обогреватель воздушного суднаaircraft heating systemсистема обогрева воздушного суднаaircraft heelкрен воздушного суднаaircraft high tension wiringэлектропроводка высокого напряжения на воздушном суднеaircraft hijack protectionзащита воздушного судна от угонаaircraft hoistсамолетный подъемникaircraft hourсамолето-часaircraft hydraulic jackгидроподъемник для воздушного суднаaircraft icingобледенение воздушного суднаaircraft identificationопознавание воздушного суднаaircraft identification systemсистема опознавания воздушного суднаaircraft impactстолкновение воздушного суднаaircraft impact angleугол удара воздушного суднаaircraft in distressвоздушное судно, терпящее бедствиеaircraft in missingвоздушное судно, пропавшее без вестиaircraft in serviceэксплуатируемое воздушное судноaircraft insuranceстрахование воздушного суднаaircraft integrated data systemбортовая комплексная система регистрации данныхaircraft intentional swerveпреднамеренное отклонение воздушного суднаaircraft interchangeобмен воздушными судамиaircraft is considered to be missingвоздушное судно считается пропавшим без вестиaircraft jacking pointместо установки домкрата для подъема воздушного суднаaircraft ladderбортовая лестницаaircraft ladingзагрузка воздушного суднаaircraft landingпосадка воздушного суднаaircraft landing measurement systemсистема измерения посадочных параметров воздушного суднаaircraft lateral inbalanceнарушение поперечной центровки воздушного суднаaircraft layoutкомпоновка воздушного суднаaircraft leadэлектропроводка воздушного суднаaircraft leafletрекламный проспект воздушного суднаaircraft leaseаренда воздушного суднаaircraft leveling pointнивелировочная точка воздушного суднаaircraft lightsбортовые аэронавигационные огниaircraft limit switchконцевой выключатель в системе воздушного суднаaircraft listкрен воздушного суднаaircraft load distributionраспределение загрузки воздушного суднаaircraft load factorкоэффициент загрузки воздушного суднаaircraft loading chartсхема загрузки воздушного суднаaircraft loading diagramсхема загрузки воздушного суднаaircraft loading instructionинструкция по загрузке воздушного суднаaircraft low tension wiringэлектропроводка низкого напряжения на воздушном суднеaircraft maintenance baseавиационная техническая базаaircraft maintenance depotавиационная техническая базаaircraft maintenance divisionцех технического обслуживания воздушных судовaircraft maintenance engineerинженер по техническому обслуживанию воздушных судовaircraft maintenance engineering exhibitionвыставка технического оборудования для обслуживания воздушных судовaircraft maintenance guideруководство по технической эксплуатации воздушного суднаaircraft maintenance performanceэксплуатационная технологичность воздушного суднаaircraft maintenance practiceтехнология технического обслуживания воздушного суднаaircraft maintenance teamбригада технического обслуживания воздушных судовaircraft main viewобщий вид воздушного суднаaircraft manoeuvrabilityманевренность воздушного суднаaircraft manufacturing facilitiesавиационное производственное предприятиеaircraft manufacturing plantавиационный заводaircraft minimaминимум воздушного суднаaircraft mockupмакет воздушного суднаaircraft modelмодель воздушного суднаaircraft movementдвижение воздушного суднаaircraft mushпросадка воздушного суднаaircraft nationality markгосударственный опознавательный знак воздушного суднаaircraft navigation equipmentбортовое навигационное оборудованиеaircraft noise abatement operating proceduresэксплуатационные методы снижения авиационного шумаaircraft noise annoyanceраздражающее воздействие шума от воздушного судaircraft noise certificateсертификат воздушного судна по шумуaircraft noise pollutionвредное воздействие шума от воздушных судовaircraft noise prediction programпрограмма прогнозирования авиационного шумаaircraft nose sectionносовая часть воздушного суднаaircraft observationнаблюдение с борта воздушного суднаaircraft on flightвоздушное судно в полетеaircraft on registerвоздушное судно, занесенное в реестрaircraft operating agencyлетно-эксплуатационное предприятиеaircraft operating expensesэксплуатационные расходы на воздушное судноaircraft operating instructionинструкция по эксплуатации воздушного суднаaircraft operationэксплуатация воздушного суднаaircraft operational empty weightдопустимая посадочная массаaircraft operational rangeэксплуатационная дальность полета воздушного суднаaircraft operational weightмасса снаряженного воздушного судна без пассажировaircraft overhaulремонт воздушного суднаaircraft overhaul plantремонтный авиационный заводaircraft overhaul shopмастерская капитального ремонта воздушных судовaircraft overswingingраскачивание воздушного суднаaircraft parkingпарковка воздушного суднаaircraft parking equipmentоборудование места стоянки воздушного суднаaircraft parking placeместо стоянки воздушного суднаaircraft passenger insuranceстрахование авиапассажировaircraft perfomance limitationsлетно-технические ограниченияaircraft performance characteristicsлетно-технические характеристикиaircraft performancesлетно-технические характеристики воздушного суднаaircraft phantom viewусловно прозрачный вид воздушного суднаaircraft pivotingразворот воздушного суднаaircraft pneumatic systemпневматическая система воздушного суднаaircraft portable equipmentпереносное бортовое оборудованиеaircraft positionотметка местоположения воздушного суднаaircraft position indicatorуказатель положения воздушного суднаaircraft position lineлиния положения воздушного суднаaircraft position reportсообщение о положении воздушного суднаaircraft power reductionуменьшение мощности двигателей воздушного суднаaircraft power supplyбортовой источник электропитанияaircraft productionпроизводство воздушных судовaircraft production break lineлиния технологического разъема воздушного суднаaircraft production inspectionконтроль качества изготовления воздушных судовaircraft prototypeопытный вариант воздушного суднаaircraft provider stateгосударство - поставщик воздушного суднаaircraft rangeдальность полета воздушного суднаaircraft ratingклассификационная отметка воздушного суднаaircraft readinessготовность воздушного суднаaircraft recorderбортовой регистраторaircraft recorder equipmentбортовая контрольно-записывающая аппаратураaircraft recoveryобнаружение и удаление воздушного суднаaircraft recovery dateдата обнаружения пропавшего воздушного суднаaircraft recovery kitкомплект оборудования для удаления воздушного суднаaircraft recovery planплан восстановления воздушного суднаaircraft reference symbolуказатель положения воздушного судна(на шкале навигационного прибора) aircraft registrationрегистрация воздушного суднаaircraft registration markбортовой регистрационный знак воздушного суднаaircraft registry stateгосударство регистрации воздушного суднаaircraft reliabilityнадежность воздушного суднаaircraft removal from serviceснятие воздушного судна с эксплуатацииaircraft rental costsрасходы на аренду воздушного суднаaircraft repair depotбаза ремонта воздушных судовaircraft repair kitтехническая аптечка воздушного суднаaircraft repairmanспециалист по ремонту воздушных судовaircraft repair shopавиаремонтная мастерскаяaircraft requiring assistanceвоздушное судно, нуждающееся в помощиaircraft reserve factorзапас прочности воздушного суднаaircraft responderсамолетный ответчикaircraft retrofitдоработка воздушного суднаaircraft rollкрен воздушного суднаaircraft safe lifeбезопасный срок службы воздушного суднаaircraft safety beaconпроблесковый маяк для предупреждения столкновенияaircraft safety factorуровень безопасности полетов воздушного суднаaircraft salvageэвакуация воздушного судна с места аварииaircraft sanitary controlсанитарный контроль воздушных судовaircrafts batchсерия воздушных судовaircraft seating densityплотность размещения кресел на воздушном суднеaircraft self routingпрокладка маршрута с помощью бортовых средств навигацииaircraft sensitivityуправляемость воздушного суднаaircraft separation assuranceобеспечение эшелонирования полетов воздушных судовaircraft service periodпродолжительность обслуживания воздушного суднаaircraft service truck'sтранспортные средства для обслуживания воздушного суднаaircraft servicingобслуживание воздушного суднаaircraft servicing equipmentоборудование для обслуживания воздушного суднаaircraft servicing installationстационарная установка для обслуживания воздушного суднаaircraft settingпеленгование воздушного суднаaircraft's fileнабор бортовой документацииaircraft shedангар для воздушного суднаaircraft sideборт воздушного суднаaircrafts impingementстолкновение воздушных судовaircraft simulatorтренажер воздушного суднаaircraft skidding dragсопротивление скольжению воздушного суднаaircraft's loading positionместо загрузки воздушного суднаaircraft sound proofingзвукоизоляция воздушного суднаaircraft spacingэшелонирование полетов воздушных судовaircraft spare partзапасные части для воздушного суднаaircraft's parking positionместо стоянки воздушного суднаaircraft speedскорость воздушного суднаaircraft spiral glideпланирование воздушного судна по спиралиaircraft's present positionфактическое положение воздушного суднаaircraft standместо остановки воздушного суднаaircraft standby facilitiesрезервное оборудование воздушного суднаaircraft stand identificationобозначение места остановки воздушного суднаaircraft stand identification signопознавательный знак места стоянки воздушного суднаaircraft stand lead-in lineлиния заруливания воздушного судна на стоянкуaircraft stand markingмаркировка места стоянки воздушного суднаaircraft stand taxilaneлиния руления воздушного судна в зоне стоянкиaircraft status reportдонесение о состоянии парка воздушных судовaircraft step unitбортовой трапaircraft stopостановка воздушного суднаaircraft stopping performanceтормозная характеристика воздушного суднаaircraft storage batteryбортовая аккумуляторная батареяaircraft storage instructionинструкция по консервации и хранению воздушного суднаaircraft structural deformationдеформация конструкции воздушного суднаaircraft structureконструкция воздушного суднаaircraft substantial damageзначительное повреждение суднаaircraft sudden swerveвнезапное отклонение воздушного суднаaircraft supersedeasсписание воздушного суднаaircraft supplierпредприятие - поставщик воздушных судовaircraft surface movement indicatorиндикатор наземного движения воздушных судовaircraft systemбортовая системаaircraft technicianавиационный техникaircraft test dataданные о результатах испытаний воздушного суднаaircraft test stationиспытательная станция воздушных судовaircraft tie-down pointточка швартовки воздушного суднаaircraft tightnessгерметичность воздушного суднаaircraft tool codingмаркировка бортового инструментаaircraft towing pointбуксировочный узел воздушного суднаaircraft trailспутный след воздушного суднаaircraft trimбалансировка воздушного суднаaircraft typeтип воздушного суднаaircraft uncontrollabilityнеуправляемость воздушного суднаaircraft underloadingнеполная загрузка воздушного суднаaircraft unlawful seizureнезаконный захват воздушного суднаaircraft usability factorкоэффициент использования воздушного суднаaircraft useful loadполезная нагрузка воздушного суднаaircraft user stateгосударство - эксплуатант воздушного суднаaircraft ventilation rateстепень вентиляции кабины воздушного суднаaircraft wakeспутная струя за воздушным судномaircraft warning systemсистема предупредительной сигнализации воздушного суднаaircraft warrantyгарантийный срок воздушного суднаaircraft washing plantмоечная установка для воздушных судовaircraft wearout rateстепень износа воздушного суднаaircraft weight categoryвесовая категория воздушного суднаaircraft weight toleranceдопуск на массу воздушного суднаaircraft wet leaseаренда воздушного судна вместе с экипажемaircraft wreckполомка воздушного суднаairodynamically balanced aircraftаэродинамически сбалансированное воздушное судноalign the aircraftустанавливать воздушное судноalign the aircraft with the center lineустанавливать воздушное судно по осиalign the aircraft with the runwayустанавливать воздушное судно по оси ВППall-cargo aircraftгрузовое воздушное судноall-metal aircraftцельнометаллическое воздушное судноall-purpose aircraftмногоцелевое воздушное судноall-weather aircraftвсепогодное воздушное судноall-wing aircraftвоздушное судно схемы летающее крылоambulance aircraftсанитарное воздушное судноamphibian aircraftсамолет - амфибияapproaching aircraftвоздушное судно, совершающее заход на посадкуarriving aircraftприбывающее воздушное судноassociated aircraft systemвспомогательная бортовая система воздушного суднаauthorized aircraftвоздушное судно, имеющее разрешение на полетbalanced aircraftсбалансированное воздушное судноbalance the aircraftбалансировать воздушное судноbaseline aircraftслужебное воздушное судноbaseline aircraft configurationконфигурация базовой модели воздушного суднаbasic aircraftосновной вариант воздушного суднаboard an aircraftподниматься на борт воздушного суднаbring the aircraft backвозвращать воздушное судноbring the aircraft outвыводить воздушное судно из кренаbusiness aircraftслужебное воздушное судноcanard aircraftвоздушное судно схемы уткаcargo aircraftгрузовое служебное судноcause of aircraft troubleпричина неисправности воздушного суднаcharter an aircraftфрахтовать воздушное судноchartered aircraftзафрахтованное воздушное судноcivil aircraftвоздушное судно гражданской авиацииclean aircraftвоздушное судно с убранной механизацией крылаclean the aircraftубирать механизацию крыла воздушного суднаclearance of the aircraftразрешение воздушному суднуcleared aircraftвоздушное судно, получившее разрешениеclear the aircraftдавать разрешение воздушному суднуcombination aircraftвоздушное судно для смешанных перевозокCommittee on Aircraft NoiseКомитет по авиационному шумуcommuter-size aircraftвоздушное судно местных воздушных линийcomplex type of aircraftкомбинированный тип воздушного суднаconsider an aircraft serviceableдопускать воздушное судно к дальнейшей эксплуатацииcontrol the aircraftуправлять воздушным судномconventional takeoff and landing aircraftвоздушное судно обычной схемы взлета и посадкиconvert an aircraftпереоборудовать воздушное судноconvertible aircraftгрузопассажирское воздушное судноcover an aircraft withзачехлять воздушное судноdamage aircraft structureповреждать конструкцию воздушного суднаdamaged aircraftповрежденное воздушное судноdecelerate the aircraft toснижать скорость воздушного судна доdelta-wing aircraftвоздушное судно с треугольным крыломdeparting aircraftвылетающее воздушное судноderived aircraftмодифицированное воздушное судноdisabled aircraftвоздушное судно, выведенное из строяdouble-decker aircraftдвухпалубное воздушное судноease the aircraft onвыравнивать воздушное судноeastbound aircraftвоздушное судно, летящее курсом на востокeffect on an aircraftвлиять на состояние воздушного суднаenable the aircraft toдавать воздушному судну правоendanger the aircraftсоздавать опасность для воздушного суднаengage in aircraft operationэксплуатировать воздушное судноenter the aircraftзаносить воздушное судно в реестрenter the aircraft standзаруливать на место стоянки воздушного суднаentire aircraftукомплектованное воздушное судноenvironmentally attuned aircraftвоздушное судно, удовлетворяющее требованиям сохранения окружающей средыequip an aircraft withоборудовать воздушное судноestimated position of aircraftрасчетное положение воздушного суднаexecutive aircraftадминистративное воздушное судноexperimental aircraftопытный вариант воздушного суднаfeeder aircraftвоздушное судно вспомогательной авиалинииfill an aircraft withразмещать в воздушном суднеfirst-generation aircraftвоздушное судно первого поколенияfit an aircraft withоборудовать воздушное судноfixed-wing aircraftвоздушное судно с неподвижным крыломfly by an aircraftлетать на воздушном суднеfly the aircraft1. пилотировать воздушное судно2. управлять самолетом folding wing aircraftвоздушное судно со складывающимся крыломfollowing aircraftвоздушное судно, идущее следомfollow up the aircraftсопровождать воздушное судноforest patrol aircraftвоздушное судно для патрулирования лесных массивовfreight aircraftгрузовое воздушное судноfull-scalle aircraftполномасштабная модель воздушного суднаgeneral-purpose aircraftвоздушное судно общего назначенияhandy aircraftлегкоуправляемое воздушное судноhead the aircraft into windнаправлять воздушное судно против ветраheavier-than-air aircraftлетательный аппарат тяжелее воздухаheavy aircraftтранспортное воздушное судноhigh-altitude aircraftвоздушное судно для полетов на большой высотеhigh-capacity aircraftвоздушное судно большой вместимостиhigh-speed aircraftскоростное воздушное судноhigh-wing aircraftвоздушное судно с верхним расположением крылаholding aircraftвоздушное судно в зоне ожиданияhold the aircraft on the headingвыдерживать воздушное судно на заданном курсеhospital aircraftсанитарное воздушное судноhouse an aircraftразмещать воздушное судноhypersonic aircraftгиперзвуковое воздушное судноidentify the aircraftопознавать воздушное судноimproperly loaded aircraftвоздушное судно, загруженное не по установленной схемеinbound aircraftприбывающее воздушное судноin-coming aircraftвоздушное судно на подходеinconventional type of aircraftнестандартный тип воздушного суднаin-flight aircraftвоздушное судно в полетеinherent in the aircraftсвойственный воздушному суднуin-service aircraftэксплуатируемое воздушное судноinstall in the aircraftустанавливать на борту воздушного суднаinstall on the aircraftмонтировать на воздушном суднеinterception of civil aircraftперехват гражданского воздушного суднаinterchanged aircraftвоздушное судно по обменуintercharged aircraft agreementсоглашение об обмене воздушными суднамиinternational aircraft standardмеждународный авиационный стандартInternational Council of Aircraft Owner and Pilot AssociationsМеждународный совет ассоциаций владельцев воздушных судов и пилотовintruding aircraftвоздушное судно, создающее опасность столкновенияinward aircraftприбывающее воздушное судноirrepairable aircraftнеремонтопригодное воздушное судноjack an aircraftвывешивать воздушное судно на подъемникахjet aircraftреактивное воздушное судноjoin an aircraftсовершать посадку на борт воздушного суднаkeep clear of the aircraftдержаться на безопасном расстоянии от воздушного суднаkeep the aircraft onвыдерживать воздушное судноknown aircraft damageустановленное повреждение воздушного суднаladen aircraftзагруженное воздушное судноland aircraftсухопутное воздушное судноland the aircraftприземлять воздушное судноlead in the aircraftзаруливать воздушное судноlead out the aircraftвыруливать воздушное судноlease an aircraftарендовать воздушное судноleased aircraftарендованное воздушное судноlessee of an aircraftарендатор воздушного суднаlevel the aircraft outвыравнивать воздушное судноlicensed aircraftлицензированное воздушное судноlift an aircraft onвывешивать воздушное судноlift-fuselage aircraftвоздушное судно с несущим фюзеляжемlight aircraftвоздушное судно небольшой массыlighter-than-air aircraftлетательный аппарат легче воздухаline up the aircraftвыруливать воздушное судно на исполнительный стартlong-bodied aircraftдлиннофюзеляжный самолетlong-distance aircraftвоздушное судно большой дальности полетовlow annoyance aircraftмалошумное воздушное судноlow-wing aircraftвоздушное судно с низким расположением крылаmail-carrying aircraftпочтовое воздушное судноmaintain the aircraft at readiness toдержать воздушное судно готовымmake the aircraft airborneотрывать воздушное судно от землиmaking way aircraftвоздушное судно в полетеmanned aircraftпилотируемое воздушное судноmid-wing aircraftвоздушное судно со средним расположением крылаmissing aircraftпропавшее воздушное судноmodified aircraftмодифицированное воздушное судноmoor the aircraftшвартовать воздушное судноmulticrew aircraftвоздушное судно с экипажем из нескольких человекmultiengined aircraftвоздушное судно с двумя и более двигателямиmultipurpose aircraftмногоцелевое воздушное судноnarrow-body aircraftвоздушное судно с узким фюзеляжемnonnoise certificate aircraftвоздушное судно, не сертифицированное по шумуnose-in aircraft standместо стоянки воздушного судна носом к аэровокзалуnose-out aircraft standместо стоянки воздушного судна хвостом к аэровокзалуon aircraft center lineпо оси воздушного суднаoncoming aircraftвоздушное судно, находящееся на встречном курсеone-engined aircraftвоздушное судно с одним двигателемoperate an aircraftэксплуатировать воздушное судноoperation of aircraftэксплуатация воздушного суднаoriginating aircraftвылетающее воздушное судноoutbound aircraftвылетающее воздушное судноoutdated aircraftустаревшая модель воздушного суднаout-of-balance aircraftнесбалансированное воздушное судноoutward aircraftвылетающее воздушное судноoverweight aircraftперегруженное воздушное судноowner-operated aircraftвоздушное судно, находящееся в эксплуатации владельцаpark an aircraftпарковать воздушное судноpassenger aircraftпассажирское воздушное судноpatrol aircraftпатрульное воздушное судноpiston-engined aircraftвоздушное судно с поршневым двигателемplace the aircraftустанавливать воздушное судноplot the aircraftзасекать воздушное судноpractice aircraftтренировочное воздушное судноpreceeding aircraftвоздушное судно, идущее впередиpreproduction aircraftопытный вариант воздушного суднаpressurized aircraftгерметизированное воздушное судноproduction aircraftсерийный вариант воздушного суднаprofitable aircraftкоммерческое воздушное судноprop-driven aircraftвинтовое воздушное судноproperly identify the aircraftточно опознавать воздушное судноprototype aircraftопытный вариант воздушного суднаpull the aircraft out ofбрать штурвал на себяpush the aircraft backбуксировать воздушное судно хвостом впередpush the aircraft downснижать высоту полета воздушного суднаput the aircraft into productionзапускать воздушное судно в производствоput the aircraft on the courseвыводить воздушное судно на заданный курсput the aircraft overпереводить воздушное судно в горизонтальный полетquiet aircraftбесшумное воздушное судноreceiver aircraftвоздушное судно, дозаправляемое в полетеreduced takeoff and landing aircraftвоздушное судно укороченного взлета и посадкиreequip an aircraftзаменять оборудование воздушного суднаregister the aircraftрегистрировать воздушное судноregular-body aircraftвоздушное судно с фюзеляжем типовой схемыrelease the aircraftпрекращать контроль воздушного суднаremoval of aircraftудаление воздушного суднаremove the aircraftудалять воздушное судноrescue aircraftпоисково-спасательное воздушное судноresearch aircraftисследовательское воздушное судноrestore an aircraftвосстанавливать воздушное судноretirement of aircraftсписание воздушного суднаreturn an aircraft to flyable statusприводить воздушное судно в состояние летной годностиreturn the aircraft to serviceдопускать воздушное судно к дальнейшей эксплуатацииroll in the aircraftвводить воздушное судно в кренroll on the aircraftвыполнять этап пробега воздушного суднаroll out the aircraftвыводить воздушное судно из кренаrotary-wing aircraftвоздушное судно с несущим винтомrotate the aircraftотрывать переднюю опору шасси воздушного суднаsafe handling of an aircraftбезопасное управление воздушным судномschool aircraftучебное воздушное судноsea aircraftгидровариант воздушного суднаsearch and rescue aircraftпоисково-спасательное воздушное судноseparate the aircraftэшелонировать воздушное судноshort-range aircraftвоздушное судно для местный авиалинийshort takeoff and landing aircraftвоздушное судно короткого взлета и посадкиsingle-engined aircraftвоздушное судно с одним двигателемsingle-pilot aircraftвоздушное судно с одним пилотомsingle-seater aircraftодноместное воздушное судноspace the aircraftопределять зону полета воздушного суднаsports aircraftспортивное воздушное судноstandby aircraftрезервное воздушное судноstate aircraftвоздушное судно государственной принадлежностиstate of aircraft manufactureгосударство - изготовитель воздушного суднаstayed afloat aircraftвоздушное судно, оставшееся на плавуsteer the aircraftуправлять воздушным судномstretched aircraftвоздушное судно с удлиненным фюзеляжемsubsonic aircraftдозвуковое воздушное судноsubstantially dameged aircraftсущественно поврежденное воздушное судноsubstitute the aircraftзаменять воздушное судноsupersonic aircraftсверхзвуковое воздушное судноsuspected aircraft damageпредполагаемое повреждение воздушного суднаtailless aircraftвоздушное судно схемы летающее крылоtaxiing aircraftрулящее воздушное судноterminating aircraftвоздушное судно, прибывающее в конечный аэропортtest aircraftиспытываемое воздушное судноthe aircraft under commandуправляемое воздушное судноtoday's aircraftвоздушное судно, отвечающее современным требованиямtopped-up aircraftснаряженное воздушное судноtraining aircraftучебно-тренировочное воздушное судноtransonic aircraftоколозвуковое воздушное судноtransport aircraftтранспортное воздушное судноtrim the aircraftбалансировать воздушное судноturbine-engined aircraftвоздушное судно с газотурбинными двигателямиturbojet aircraftвоздушное судно с турбореактивными двигателямиturboprop aircraftвоздушное судно с турбовинтовыми двигателямиtwin-engined aircraftвоздушное судно с двумя двигателямиtwin-fuselage aircraftдвухфюзеляжное воздушное судноunder command aircraftуправляемое воздушное судноunder way aircraftвоздушное судно, готовое к полетуunladen aircraftразгруженное воздушное судноunlawfully seized aircraftнезаконно захваченное воздушное судноunpressurized aircraftнегерметизированное воздушное судноunstall the aircraftвыводить воздушное судно из сваливания на крылоunstick the aircraftотрывать воздушное судно от землиvend an aircraftпоставлять воздушное судноvertical takeoff and landing aircraftвоздушное судно вертикального взлета и посадкиwarn the aircraftпредупреждать воздушное судноwide-body aircraftширокофюзеляжное воздушное судноwork on the aircraftвыполнять работу на воздушном судне -
10 structure
1. конструкция2. структура; схема2-D structureaircraft structureanechoic structurearticulated structureback-up structurebasing structurebeam structureblended wing/fuselage structureboron epoxy structurebuilt-up structurecarry-through structurecellular structureconceptual structurecontrol structurecontrol law structurecontrol system structurecracked structurecurved structuredamage tolerant structuredistributed structuredistributed-parameter structureelastic structureelastic-plastic structurefail-safe structurefeedback structureflight structureflow structureframed structurefull-support structurefuselage structuregrid structurehelicopter structurehighly coupled structurehypersonic structureimpact-resistant structureinlet structureinspection-free structureintegrally stiffened structureinternal structurejoined-wing structurelaminar flow control structurelarge support structurelife-limiting structurelightly-damped structurelinearly elastic structureloop structurelow-maintenance structuremembrane structuremodel structuremodel-following structuremulti load path structuremultispar structureNavier-Stokes structure of flownon-Gaussian structurenoninspectable structurepanel structurepitch control structureplane structureprimary structureroof structureroute structuresemimonocoque structureshell structureshock structureshock-absorbing structureskin structureskin-stringer structurespace structurestatically determinate structurestatically indeterminate structurestiffness coupled structurestrength sized structuresupport structuretailored structurethin-walled structuretire structuretorsion-box structuretruss structuretwo-spar structureundamped structureuntailored structureviscoelastically damped structurevortex structurewelded structurewing structurewing box structurewing carry-through structure -
11 response
1. реакция; реагирование; отклик; ответ(ное действие); выходной сигнал; срабатывание; возмущенное движение <ЛА>/ реагировать; отвечать3. характеристика; зависимость; (динамические) характеристики4. приемистость < двигателя>5. эффективность < органа управления>response due to longitudinal stick commandresponse due to rudder inputresponse in sideslipresponse in turnresponse of stick position to stick forceresponse to turbulenceabrupt responseacceleration responseactuator responseaerodynamic responseaeroelastic responseaircraft responseairspeed responsealpha responsealpha-ramp responseamplitude responseangle-of-attack responseangular responseattitude to stick force responsebase-excitation responsebeam responseblade responsebrake responsebuffet responsebuffeting responseC* responsechord responseclosed-loop responseclosed-loop frequency responsecommand responsecommanded responsecomputer responsecomputer-triggered responsecontrol responsecontrol surface responsecontrol-system responsecoupled responsecrisp responsedamped responsedamper responsedead-beat responsedecoupled responsedisplacement responsedivergent responsediverging responsedoublet responseDutch roll responsedynamic responseedgewise responseelastic responseelastodynamic responseexperimental responsefilter responseflap responseflat amplitude responseflexible responseflight responseflight path to stick force frequency responseflight path responseflight path angle responseforced responsefracture responsefree responsefree-flight responsefrequency responsefull-scale responsefull-state responsefull-elevator responseg responseglideslope responsegust responseheave responseHeaviside responsehelicopter responsehigh-frequency responsehigh-overshoot responsehorizontal tail deflection responsehorizontal tail rate responseimpact responseimpulse responsein-phase responseindicial responseinelastic responseinstantaneous responsejamming responselanding gear responselarge-amplitude responselateral responselateral stick responselateral-directional responselead-lag responselift responselift coefficient responseload responseload factor responselong term responselong-period responselongitudinal responseloop frequency responselow-overshoot responsemaneuver responsemaneuvering responsemaximum control responsemid-frequency responsemodel responsemodel-following responsemotor responsenon-Gaussian responsenormal acceleration responsenz responseoff-axis responseon-axis responseopen-loop responseopen-loop frequency responseoscillatory responseout-of-phase responseoverly sensitive responsephase responsephugoid responsephysiologic responsepiloted responsepitch responsepitch axis responsepitch command responsepitch rate responsepitch attitude responsepointing responsepower responserate-independent plastic responseresonant responseresonator responserigid body mode responseroll responseroll axis responseroll rate responserolling responserolling axis responserough airfield responserudder pedal responsesharp responseshort term responseshort-period responseshort-period dynamic responseside-slip responsesideforce responsesimulated responsesimulator responsesluggish responsespectral responsespoiler responsesprung mass responsestatic responsesteady-state responsestep responsestep-function responsestrain responsestress responsestructural-acoustic responsesubharmonic responsethrust responsetime responsetorsional responsetracking responsetrailing-edge deflection responsetrailing-edge rate responsetransient responsetrim responseturbulence responseturbulence-excited responsetwo-per-rev responseundamped responseunstable responsevehicle responsevelocity responsevertical responsevestibular responsevibration responsevibrational responsevibratory responsewell-damped responsewing responsewing beam responsewing rock type responseyaw responseyawing response -
12 Artificial Intelligence
In my opinion, none of [these programs] does even remote justice to the complexity of human mental processes. Unlike men, "artificially intelligent" programs tend to be single minded, undistractable, and unemotional. (Neisser, 1967, p. 9)Future progress in [artificial intelligence] will depend on the development of both practical and theoretical knowledge.... As regards theoretical knowledge, some have sought a unified theory of artificial intelligence. My view is that artificial intelligence is (or soon will be) an engineering discipline since its primary goal is to build things. (Nilsson, 1971, pp. vii-viii)Most workers in AI [artificial intelligence] research and in related fields confess to a pronounced feeling of disappointment in what has been achieved in the last 25 years. Workers entered the field around 1950, and even around 1960, with high hopes that are very far from being realized in 1972. In no part of the field have the discoveries made so far produced the major impact that was then promised.... In the meantime, claims and predictions regarding the potential results of AI research had been publicized which went even farther than the expectations of the majority of workers in the field, whose embarrassments have been added to by the lamentable failure of such inflated predictions....When able and respected scientists write in letters to the present author that AI, the major goal of computing science, represents "another step in the general process of evolution"; that possibilities in the 1980s include an all-purpose intelligence on a human-scale knowledge base; that awe-inspiring possibilities suggest themselves based on machine intelligence exceeding human intelligence by the year 2000 [one has the right to be skeptical]. (Lighthill, 1972, p. 17)4) Just as Astronomy Succeeded Astrology, the Discovery of Intellectual Processes in Machines Should Lead to a Science, EventuallyJust as astronomy succeeded astrology, following Kepler's discovery of planetary regularities, the discoveries of these many principles in empirical explorations on intellectual processes in machines should lead to a science, eventually. (Minsky & Papert, 1973, p. 11)5) Problems in Machine Intelligence Arise Because Things Obvious to Any Person Are Not Represented in the ProgramMany problems arise in experiments on machine intelligence because things obvious to any person are not represented in any program. One can pull with a string, but one cannot push with one.... Simple facts like these caused serious problems when Charniak attempted to extend Bobrow's "Student" program to more realistic applications, and they have not been faced up to until now. (Minsky & Papert, 1973, p. 77)What do we mean by [a symbolic] "description"? We do not mean to suggest that our descriptions must be made of strings of ordinary language words (although they might be). The simplest kind of description is a structure in which some features of a situation are represented by single ("primitive") symbols, and relations between those features are represented by other symbols-or by other features of the way the description is put together. (Minsky & Papert, 1973, p. 11)[AI is] the use of computer programs and programming techniques to cast light on the principles of intelligence in general and human thought in particular. (Boden, 1977, p. 5)The word you look for and hardly ever see in the early AI literature is the word knowledge. They didn't believe you have to know anything, you could always rework it all.... In fact 1967 is the turning point in my mind when there was enough feeling that the old ideas of general principles had to go.... I came up with an argument for what I called the primacy of expertise, and at the time I called the other guys the generalists. (Moses, quoted in McCorduck, 1979, pp. 228-229)9) Artificial Intelligence Is Psychology in a Particularly Pure and Abstract FormThe basic idea of cognitive science is that intelligent beings are semantic engines-in other words, automatic formal systems with interpretations under which they consistently make sense. We can now see why this includes psychology and artificial intelligence on a more or less equal footing: people and intelligent computers (if and when there are any) turn out to be merely different manifestations of the same underlying phenomenon. Moreover, with universal hardware, any semantic engine can in principle be formally imitated by a computer if only the right program can be found. And that will guarantee semantic imitation as well, since (given the appropriate formal behavior) the semantics is "taking care of itself" anyway. Thus we also see why, from this perspective, artificial intelligence can be regarded as psychology in a particularly pure and abstract form. The same fundamental structures are under investigation, but in AI, all the relevant parameters are under direct experimental control (in the programming), without any messy physiology or ethics to get in the way. (Haugeland, 1981b, p. 31)There are many different kinds of reasoning one might imagine:Formal reasoning involves the syntactic manipulation of data structures to deduce new ones following prespecified rules of inference. Mathematical logic is the archetypical formal representation. Procedural reasoning uses simulation to answer questions and solve problems. When we use a program to answer What is the sum of 3 and 4? it uses, or "runs," a procedural model of arithmetic. Reasoning by analogy seems to be a very natural mode of thought for humans but, so far, difficult to accomplish in AI programs. The idea is that when you ask the question Can robins fly? the system might reason that "robins are like sparrows, and I know that sparrows can fly, so robins probably can fly."Generalization and abstraction are also natural reasoning process for humans that are difficult to pin down well enough to implement in a program. If one knows that Robins have wings, that Sparrows have wings, and that Blue jays have wings, eventually one will believe that All birds have wings. This capability may be at the core of most human learning, but it has not yet become a useful technique in AI.... Meta- level reasoning is demonstrated by the way one answers the question What is Paul Newman's telephone number? You might reason that "if I knew Paul Newman's number, I would know that I knew it, because it is a notable fact." This involves using "knowledge about what you know," in particular, about the extent of your knowledge and about the importance of certain facts. Recent research in psychology and AI indicates that meta-level reasoning may play a central role in human cognitive processing. (Barr & Feigenbaum, 1981, pp. 146-147)Suffice it to say that programs already exist that can do things-or, at the very least, appear to be beginning to do things-which ill-informed critics have asserted a priori to be impossible. Examples include: perceiving in a holistic as opposed to an atomistic way; using language creatively; translating sensibly from one language to another by way of a language-neutral semantic representation; planning acts in a broad and sketchy fashion, the details being decided only in execution; distinguishing between different species of emotional reaction according to the psychological context of the subject. (Boden, 1981, p. 33)Can the synthesis of Man and Machine ever be stable, or will the purely organic component become such a hindrance that it has to be discarded? If this eventually happens-and I have... good reasons for thinking that it must-we have nothing to regret and certainly nothing to fear. (Clarke, 1984, p. 243)The thesis of GOFAI... is not that the processes underlying intelligence can be described symbolically... but that they are symbolic. (Haugeland, 1985, p. 113)14) Artificial Intelligence Provides a Useful Approach to Psychological and Psychiatric Theory FormationIt is all very well formulating psychological and psychiatric theories verbally but, when using natural language (even technical jargon), it is difficult to recognise when a theory is complete; oversights are all too easily made, gaps too readily left. This is a point which is generally recognised to be true and it is for precisely this reason that the behavioural sciences attempt to follow the natural sciences in using "classical" mathematics as a more rigorous descriptive language. However, it is an unfortunate fact that, with a few notable exceptions, there has been a marked lack of success in this application. It is my belief that a different approach-a different mathematics-is needed, and that AI provides just this approach. (Hand, quoted in Hand, 1985, pp. 6-7)We might distinguish among four kinds of AI.Research of this kind involves building and programming computers to perform tasks which, to paraphrase Marvin Minsky, would require intelligence if they were done by us. Researchers in nonpsychological AI make no claims whatsoever about the psychological realism of their programs or the devices they build, that is, about whether or not computers perform tasks as humans do.Research here is guided by the view that the computer is a useful tool in the study of mind. In particular, we can write computer programs or build devices that simulate alleged psychological processes in humans and then test our predictions about how the alleged processes work. We can weave these programs and devices together with other programs and devices that simulate different alleged mental processes and thereby test the degree to which the AI system as a whole simulates human mentality. According to weak psychological AI, working with computer models is a way of refining and testing hypotheses about processes that are allegedly realized in human minds.... According to this view, our minds are computers and therefore can be duplicated by other computers. Sherry Turkle writes that the "real ambition is of mythic proportions, making a general purpose intelligence, a mind." (Turkle, 1984, p. 240) The authors of a major text announce that "the ultimate goal of AI research is to build a person or, more humbly, an animal." (Charniak & McDermott, 1985, p. 7)Research in this field, like strong psychological AI, takes seriously the functionalist view that mentality can be realized in many different types of physical devices. Suprapsychological AI, however, accuses strong psychological AI of being chauvinisticof being only interested in human intelligence! Suprapsychological AI claims to be interested in all the conceivable ways intelligence can be realized. (Flanagan, 1991, pp. 241-242)16) Determination of Relevance of Rules in Particular ContextsEven if the [rules] were stored in a context-free form the computer still couldn't use them. To do that the computer requires rules enabling it to draw on just those [ rules] which are relevant in each particular context. Determination of relevance will have to be based on further facts and rules, but the question will again arise as to which facts and rules are relevant for making each particular determination. One could always invoke further facts and rules to answer this question, but of course these must be only the relevant ones. And so it goes. It seems that AI workers will never be able to get started here unless they can settle the problem of relevance beforehand by cataloguing types of context and listing just those facts which are relevant in each. (Dreyfus & Dreyfus, 1986, p. 80)Perhaps the single most important idea to artificial intelligence is that there is no fundamental difference between form and content, that meaning can be captured in a set of symbols such as a semantic net. (G. Johnson, 1986, p. 250)Artificial intelligence is based on the assumption that the mind can be described as some kind of formal system manipulating symbols that stand for things in the world. Thus it doesn't matter what the brain is made of, or what it uses for tokens in the great game of thinking. Using an equivalent set of tokens and rules, we can do thinking with a digital computer, just as we can play chess using cups, salt and pepper shakers, knives, forks, and spoons. Using the right software, one system (the mind) can be mapped into the other (the computer). (G. Johnson, 1986, p. 250)19) A Statement of the Primary and Secondary Purposes of Artificial IntelligenceThe primary goal of Artificial Intelligence is to make machines smarter.The secondary goals of Artificial Intelligence are to understand what intelligence is (the Nobel laureate purpose) and to make machines more useful (the entrepreneurial purpose). (Winston, 1987, p. 1)The theoretical ideas of older branches of engineering are captured in the language of mathematics. We contend that mathematical logic provides the basis for theory in AI. Although many computer scientists already count logic as fundamental to computer science in general, we put forward an even stronger form of the logic-is-important argument....AI deals mainly with the problem of representing and using declarative (as opposed to procedural) knowledge. Declarative knowledge is the kind that is expressed as sentences, and AI needs a language in which to state these sentences. Because the languages in which this knowledge usually is originally captured (natural languages such as English) are not suitable for computer representations, some other language with the appropriate properties must be used. It turns out, we think, that the appropriate properties include at least those that have been uppermost in the minds of logicians in their development of logical languages such as the predicate calculus. Thus, we think that any language for expressing knowledge in AI systems must be at least as expressive as the first-order predicate calculus. (Genesereth & Nilsson, 1987, p. viii)21) Perceptual Structures Can Be Represented as Lists of Elementary PropositionsIn artificial intelligence studies, perceptual structures are represented as assemblages of description lists, the elementary components of which are propositions asserting that certain relations hold among elements. (Chase & Simon, 1988, p. 490)Artificial intelligence (AI) is sometimes defined as the study of how to build and/or program computers to enable them to do the sorts of things that minds can do. Some of these things are commonly regarded as requiring intelligence: offering a medical diagnosis and/or prescription, giving legal or scientific advice, proving theorems in logic or mathematics. Others are not, because they can be done by all normal adults irrespective of educational background (and sometimes by non-human animals too), and typically involve no conscious control: seeing things in sunlight and shadows, finding a path through cluttered terrain, fitting pegs into holes, speaking one's own native tongue, and using one's common sense. Because it covers AI research dealing with both these classes of mental capacity, this definition is preferable to one describing AI as making computers do "things that would require intelligence if done by people." However, it presupposes that computers could do what minds can do, that they might really diagnose, advise, infer, and understand. One could avoid this problematic assumption (and also side-step questions about whether computers do things in the same way as we do) by defining AI instead as "the development of computers whose observable performance has features which in humans we would attribute to mental processes." This bland characterization would be acceptable to some AI workers, especially amongst those focusing on the production of technological tools for commercial purposes. But many others would favour a more controversial definition, seeing AI as the science of intelligence in general-or, more accurately, as the intellectual core of cognitive science. As such, its goal is to provide a systematic theory that can explain (and perhaps enable us to replicate) both the general categories of intentionality and the diverse psychological capacities grounded in them. (Boden, 1990b, pp. 1-2)Because the ability to store data somewhat corresponds to what we call memory in human beings, and because the ability to follow logical procedures somewhat corresponds to what we call reasoning in human beings, many members of the cult have concluded that what computers do somewhat corresponds to what we call thinking. It is no great difficulty to persuade the general public of that conclusion since computers process data very fast in small spaces well below the level of visibility; they do not look like other machines when they are at work. They seem to be running along as smoothly and silently as the brain does when it remembers and reasons and thinks. On the other hand, those who design and build computers know exactly how the machines are working down in the hidden depths of their semiconductors. Computers can be taken apart, scrutinized, and put back together. Their activities can be tracked, analyzed, measured, and thus clearly understood-which is far from possible with the brain. This gives rise to the tempting assumption on the part of the builders and designers that computers can tell us something about brains, indeed, that the computer can serve as a model of the mind, which then comes to be seen as some manner of information processing machine, and possibly not as good at the job as the machine. (Roszak, 1994, pp. xiv-xv)The inner workings of the human mind are far more intricate than the most complicated systems of modern technology. Researchers in the field of artificial intelligence have been attempting to develop programs that will enable computers to display intelligent behavior. Although this field has been an active one for more than thirty-five years and has had many notable successes, AI researchers still do not know how to create a program that matches human intelligence. No existing program can recall facts, solve problems, reason, learn, and process language with human facility. This lack of success has occurred not because computers are inferior to human brains but rather because we do not yet know in sufficient detail how intelligence is organized in the brain. (Anderson, 1995, p. 2)Historical dictionary of quotations in cognitive science > Artificial Intelligence
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13 Huygens, Christiaan
SUBJECT AREA: Horology[br]b. 14 April 1629 The Hague, the Netherlandsd. 8 June 1695 The Hague, the Netherlands[br]Dutch scientist who was responsible for two of the greatest advances in horology: the successful application of both the pendulum to the clock and the balance spring to the watch.[br]Huygens was born into a cultured and privileged class. His father, Constantijn, was a poet and statesman who had wide interests. Constantijn exerted a strong influence on his son, who was educated at home until he reached the age of 16. Christiaan studied law and mathematics at Ley den University from 1645 to 1647, and continued his studies at the Collegium Arausiacum in Breda until 1649. He then lived at The Hague, where he had the means to devote his time entirely to study. In 1666 he became a Member of the Académie des Sciences in Paris and settled there until his return to The Hague in 1681. He also had a close relationship with the Royal Society and visited London on three occasions, meeting Newton on his last visit in 1689. Huygens had a wide range of interests and made significant contributions in mathematics, astronomy, optics and mechanics. He also made technical advances in optical instruments and horology.Despite the efforts of Burgi there had been no significant improvement in the performance of ordinary clocks and watches from their inception to Huygens's time, as they were controlled by foliots or balances which had no natural period of oscillation. The pendulum appeared to offer a means of improvement as it had a natural period of oscillation that was almost independent of amplitude. Galileo Galilei had already pioneered the use of a freely suspended pendulum for timing events, but it was by no means obvious how it could be kept swinging and used to control a clock. Towards the end of his life Galileo described such a. mechanism to his son Vincenzio, who constructed a model after his father's death, although it was not completed when he himself died in 1642. This model appears to have been copied in Italy, but it had little influence on horology, partly because of the circumstances in which it was produced and possibly also because it differed radically from clocks of that period. The crucial event occurred on Christmas Day 1656 when Huygens, quite independently, succeeded in adapting an existing spring-driven table clock so that it was not only controlled by a pendulum but also kept it swinging. In the following year he was granted a privilege or patent for this clock, and several were made by the clockmaker Salomon Coster of The Hague. The use of the pendulum produced a dramatic improvement in timekeeping, reducing the daily error from minutes to seconds, but Huygens was aware that the pendulum was not truly isochronous. This error was magnified by the use of the existing verge escapement, which made the pendulum swing through a large arc. He overcame this defect very elegantly by fitting cheeks at the pendulum suspension point, progressively reducing the effective length of the pendulum as the amplitude increased. Initially the cheeks were shaped empirically, but he was later able to show that they should have a cycloidal shape. The cheeks were not adopted universally because they introduced other defects, and the problem was eventually solved more prosaically by way of new escapements which reduced the swing of the pendulum. Huygens's clocks had another innovatory feature: maintaining power, which kept the clock going while it was being wound.Pendulums could not be used for portable timepieces, which continued to use balances despite their deficiencies. Robert Hooke was probably the first to apply a spring to the balance, but his efforts were not successful. From his work on the pendulum Huygens was well aware of the conditions necessary for isochronism in a vibrating system, and in January 1675, with a flash of inspiration, he realized that this could be achieved by controlling the oscillations of the balance with a spiral spring, an arrangement that is still used in mechanical watches. The first model was made for Huygens in Paris by the clockmaker Isaac Thuret, who attempted to appropriate the invention and patent it himself. Huygens had for many years been trying unsuccessfully to adapt the pendulum clock for use at sea (in order to determine longitude), and he hoped that a balance-spring timekeeper might be better suited for this purpose. However, he was disillusioned as its timekeeping proved to be much more susceptible to changes in temperature than that of the pendulum clock.[br]Principal Honours and DistinctionsFRS 1663. Member of the Académie Royale des Sciences 1666.BibliographyFor his complete works, see Oeuvres complètes de Christian Huygens, 1888–1950, 22 vols, The Hague.1658, Horologium, The Hague; repub., 1970, trans. E.L.Edwardes, AntiquarianHorology 7:35–55 (describes the pendulum clock).1673, Horologium Oscillatorium, Paris; repub., 1986, The Pendulum Clock or Demonstrations Concerning the Motion ofPendula as Applied to Clocks, trans.R.J.Blackwell, Ames.The balance spring watch was first described in Journal des Sçavans 25 February 1675, and translated in Philosophical Transactions of the Royal Society (1675) 4:272–3.Further ReadingH.J.M.Bos, 1972, Dictionary of Scientific Biography, ed. C.C.Gillispie, Vol. 6, New York, pp. 597–613 (for a fuller account of his life and scientific work, but note the incorrect date of his death).R.Plomp, 1979, Spring-Driven Dutch Pendulum Clocks, 1657–1710, Schiedam (describes Huygens's application of the pendulum to the clock).S.A.Bedini, 1991, The Pulse of Time, Florence (describes Galileo's contribution of the pendulum to the clock).J.H.Leopold, 1982, "L"Invention par Christiaan Huygens du ressort spiral réglant pour les montres', Huygens et la France, Paris, pp. 154–7 (describes the application of the balance spring to the watch).A.R.Hall, 1978, "Horology and criticism", Studia Copernica 16:261–81 (discusses Hooke's contribution).DV -
14 Caetano, Marcello José das Neves Alves
(19061980)Marcello Caetano, as the last prime minister of the Estado Novo, was both the heir and successor of Antônio de Oliveira Salazar. In a sense, Caetano was one of the founders and sustainers of this unusual regime and, at various crucial stages of its long life, Caetano's contribution was as important as Salazar's.Born in Lisbon in 1906 to a middle-class family, Caetano was a member of the student generation that rebelled against the unstable parliamentary First Republic and sought answers to Portugal's legion of troubles in conservative ideologies such as integralism, Catholic reformism, and the Italian Fascist model. One of the most brilliant students at the University of Lisbon's Law School, Caetano soon became directly involved in government service in various ministries, including Salazar's Ministry of Finance. When Caetano was not teaching full-time at the law school in Lisbon and influencing new generations of students who became critical of the regime he helped construct, Caetano was in important government posts and working on challenging assignments. In the 1930s, he participated in reforms in the Ministry of Finance, in the writing of the 1933 Constitution, in the formation of the new civil code, of which he was in part the author, and in the construction of corporativism, which sought to control labor-management relations and other aspects of social engineering. In a regime largely directed by academics from the law faculties of Coimbra University and the University of Lisbon, Caetano was the leading expert on constitutional law, administrative law, political science, and colonial law. A prolific writer as both a political scientist and historian, Caetano was the author of the standard political science, administrative law, and history of law textbooks, works that remained in print and in use among students long after his exile and death.After his apprenticeship service in a number of ministries, Caetano rose steadily in the system. At age 38, he was named minister for the colonies (1944 47), and unlike many predecessors, he "went to see for himself" and made important research visits to Portugal's African territories. In 1955-58, Caetano served in the number-three position in the regime in the Ministry of the Presidency of the Council (premier's office); he left office for full-time academic work in part because of his disagreements with Salazar and others on regime policy and failures to reform at the desired pace. In 1956 and 1957, Caetano briefly served as interim minister of communications and of foreign affairs.Caetano's opportunity to take Salazar's place and to challenge even more conservative forces in the system came in the 1960s. Portugal's most prominent law professor had a public falling out with the regime in March 1962, when he resigned as rector of Lisbon University following a clash between rebellious students and the PIDE, the political police. When students opposing the regime organized strikes on the University of Lisbon campus, Caetano resigned his rectorship after the police invaded the campus and beat and arrested some students, without asking permission to enter university premises from university authorities.When Salazar became incapacitated in September 1968, President Américo Tomás named Caetano prime minister. His tasks were formidable: in the midst of remarkable economic growth in Portugal, continued heavy immigration of Portuguese to France and other countries, and the costly colonial wars in three African colonies, namely Angola, Guinea- Bissau, and Mozambique, the regime struggled to engineer essential social and political reforms, win the wars in Africa, and move toward meaningful political reforms. Caetano supported moderately important reforms in his first two years in office (1968-70), as well as the drafting of constitutional revisions in 1971 that allowed a slight liberalization of the Dictatorship, gave the opposition more room for activity, and decentrali zed authority in the overseas provinces (colonies). Always aware of the complexity of Portugal's colonial problems and of the ongoing wars, Caetano made several visits to Africa as premier, and he sought to implement reforms in social and economic affairs while maintaining the expensive, divisive military effort, Portugal's largest armed forces mobilization in her history.Opposed by intransigent right-wing forces in various sectors in both Portugal and Africa, Caetano's modest "opening" of 1968-70 soon narrowed. Conservative forces in the military, police, civil service, and private sectors opposed key political reforms, including greater democratization, while pursuing the military solution to the African crisis and personal wealth. A significant perspective on Caetano's failed program of reforms, which could not prevent the advent of a creeping revolution in society, is a key development in the 1961-74 era of colonial wars: despite Lisbon's efforts, the greater part of Portuguese emigration and capital investment during this period were directed not to the African colonies but to Europe, North America, and Brazil.Prime Minister Caetano, discouraged by events and by opposition to his reforms from the so-called "Rheumatic Brigade" of superannuated regime loyalists, attempted to resign his office, but President Américo Tomás convinced him to remain. The publication and public reception of African hero General Antônio Spinola's best-selling book Portugal e Futuro (Portugal and the Future) in February 1974 convinced the surprised Caetano that a coup and revolution were imminent. When the virtually bloodless, smoothly operating military coup was successful in what became known as the Revolution of 25 April 1974, Caetano surrendered to the Armed Forces Movement in Lisbon and was flown to Madeira Island and later to exile in Brazil, where he remained for the rest of his life. In his Brazilian exile, Caetano was active writing important memoirs and histories of the Estado Novo from his vantage point, teaching law at a private university in Rio de Janeiro, and carrying on a lively correspondence with persons in Portugal. He died at age 74, in 1980, in Brazil.Historical dictionary of Portugal > Caetano, Marcello José das Neves Alves
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