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  • 1 Prozessrechentechnik

    f < msr> ■ process computing engineering; process computing

    German-english technical dictionary > Prozessrechentechnik

  • 2 Prozessrechentechnik

    Prozessrechentechnik f process computing engineering

    Deutsch-Englisch Wörterbuch der Elektrotechnik und Elektronik > Prozessrechentechnik

  • 3 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, Eventually
       Just 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)
       Many 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 Form
       The 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 Formation
       It 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 Contexts
       Even 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)
        18) The Assumption That the Mind Is a Formal System
       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 Intelligence
       The 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 Propositions
       In 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

  • 4 пакетная обработка

    1) Engineering: batch computing (данных), batch-mode processing (данных)
    3) Information technology: batch operation
    7) SAP.tech. stack processing

    Универсальный русско-английский словарь > пакетная обработка

  • 5 последовательность операций

    1) General subject: flowsheet
    4) Mathematics: the operating sequence
    5) Accounting: sequence of operations
    6) Automobile industry: production planning
    7) Metallurgy: operational procedure
    8) Electronics: sequencing
    9) Information technology: computing sequence, work flow
    11) Immunology: procedure
    12) Astronautics: operations sequence
    13) Network technologies: workflow
    14) Polymers: procedure sheet
    15) Programming: sequential flow
    16) Quality control: job sequencing, series of operations
    18) Aviation medicine: job sequence
    20) Facilities: flow diagram

    Универсальный русско-английский словарь > последовательность операций

  • 6 система

    complex, chain, installation, method, repertoire вчт., repertory, structure, system
    * * *
    систе́ма ж.
    system
    дубли́ровать систе́му — duplicate a system
    отла́живать систе́му — tune up a system
    систе́ма функциони́рует норма́льно киб.the system is well-behaved
    авари́йная систе́ма ав.emergency system
    систе́ма авари́йного покида́ния ( самолёта) — escape system
    автомати́ческая систе́ма — automatic system
    систе́ма автомати́ческого регули́рования [САР] — automatic-control system of the regulator(y) type
    систе́ма автомати́ческого регули́рования, де́йствующая по отклоне́нию — error-actuated control system
    систе́ма автомати́ческого регули́рования, за́мкнутая — closed-loop control system
    систе́ма автомати́ческого регули́рования, и́мпульсная — sampling control system
    систе́ма автомати́ческого регули́рования, многоё́мкостная — multicapacity control system
    систе́ма автомати́ческого регули́рования, многоко́нтурная — multiloop control system
    систе́ма автомати́ческого регули́рования, многоме́рная — multivariable control system
    систе́ма автомати́ческого регули́рования, програ́ммная — time-pattern control system
    систе́ма автомати́ческого регули́рования, разо́мкнутая — open-loop control system
    систе́ма автомати́ческого регули́рования следя́щего ти́па — servo-operation control system
    систе́ма автомати́ческого регули́рования со случа́йными возде́йствиями, и́мпульсная — random-input sampled-data system
    систе́ма автомати́ческого регули́рования со стабилиза́цией (проце́сса) — regulator-operation control system
    систе́ма автомати́ческого управле́ния [САУ] — automatic-control system
    систе́ма автомати́ческого управле́ния, цифрова́я — digital control system
    систе́ма автоподстро́йки частоты́ [АПЧ] — AFC system
    систе́ма АПЧ захва́тывает частоту́ — the AFC system locks on to the (desired) frequency
    систе́ма АПЧ осуществля́ет по́иск частоты́ — the AFC system searches for the (desired) frequency
    систе́ма автоподстро́йки частоты́, фа́зовая [ФАПЧ] — phase-lock loop, PLL
    агрега́тная, унифици́рованная систе́ма ( советская система пневматических средств автоматики) — standard-module pneumatic instrumentation system
    адапти́вная систе́ма — adaptive system
    апериоди́ческая систе́ма — critically damped system
    асинхро́нная систе́ма — asynchronous system
    астати́ческая систе́ма — zero-constant-error system
    астати́ческая систе́ма второ́го поря́дка — Type 2 [zero-velocity-error] system
    астати́ческая систе́ма пе́рвого поря́дка — Type 1 [zero-position-error] system
    систе́ма без резерви́рования — non-redundant system
    систе́ма блокиро́вки ( радиационной установки) — interlock system
    систе́ма ва́ла ( в допусках и посадках) — the basic shaft system
    вентиляцио́нная систе́ма — ventilation system
    вентиляцио́нная, вытяжна́я систе́ма — exhaust ventilation system
    взаи́мные систе́мы — mutual systems
    систе́ма водоснабже́ния — water(-supply) system
    систе́ма водоснабже́ния, оборо́тная — circulating [closed-circuit] water system
    систе́ма водоснабже́ния, прямото́чная — once-through [run-of-river cooling] system
    систе́ма возду́шного отопле́ния — warm-air heating system
    систе́ма воспроизведе́ния ( записи) — reproduction system
    систе́ма впры́ска двс.injection system
    систе́ма впры́ска, предка́мерная двс.antechamber system of injection
    систе́ма впу́ска двс. — induction [intake] system
    систе́ма вы́борки вчт.selection system
    вытяжна́я систе́ма — exhaust system
    вычисли́тельная систе́ма — computer [computing] system
    вычисли́тельная, многома́шинная систе́ма — multicomputer system
    систе́ма генера́тор — дви́гатель — Ward-Leonard speed-control system
    гибри́дная систе́ма — hybrid system
    систе́ма громкоговоря́щей свя́зи — public-address [personnel-address, PA] system
    грузова́я систе́ма мор.cargo (handling) system
    двухкомпоне́нтная систе́ма хим. — two-component [binary] system
    двухни́точная систе́ма тепл.two-flow system
    двухпроводна́я систе́ма эл.two-wire system
    двухэлектро́дная систе́ма ( электроннооптического преобразователя) — self-focusing (diod) system
    диспе́рсная систе́ма — disperse system
    диссипати́вная систе́ма — dissipative system
    систе́ма дистанцио́нного управле́ния — remote control system
    диффере́нтная систе́ма мор.trim system
    дифференциа́льная систе́ма тлф.hybrid set
    систе́ма дождева́ния — sprinkling system
    систе́ма до́пусков — tolerance system
    систе́ма до́пусков, двусторо́нняя [симметри́чная], преде́льная — bilateral system of tolerances
    систе́ма до́пусков и поса́док — system [classification] of fits and tolerances
    систе́ма до́пусков, односторо́нняя [асимметри́чная], преде́льная — unilateral system of tolerances
    систе́ма дрена́жа ( топливных баков) ав.vent system
    систе́ма едини́ц — system of units
    систе́ма едини́ц, междунаро́дная [СИ] — international system of units, SI
    систе́ма едини́ц МКГСС уст. — MKGSS [metre-kilogram(me)-force-second ] system (of units)
    систе́ма едини́ц МКС — MKS [metre-kilogram(me)-second ] system (of units)
    систе́ма едини́ц МКСА — MKSA [metre-kilogram(me)-mass-second-ampere ] system (of units), absolute practical system of units
    систе́ма едини́ц МКСГ — MKSG [metre-kilogram(me)-force-second-kelvin ] system (of units)
    систе́ма едини́ц МСС — MSC [metre-second-candela] system (of units)
    систе́ма едини́ц МТС — MTS [metre-ton-second] system (of units)
    систе́мы едини́ц СГС — CGS [centimetre-gram(me)-second ] systems (of units)
    систе́ма едини́ц, техни́ческая — engineer's system of units
    же́зловая систе́ма ж.-д.staff system
    систе́ма жизнеобеспе́чения косм.life-support (and survival) system
    систе́ма жизнеобеспе́чения, автоно́мная — back-pack life-support system
    систе́ма зажига́ния — ignition system
    систе́ма зажига́ния, полупроводнико́вая — transistor(ized) ignition system
    систе́ма зажига́ния, электро́нная — electronic ignition system
    систе́ма заземле́ния — earth [ground] network
    замедля́ющая систе́ма — ( в электровакуумных устройствах СВЧ) slow-wave structure; ( волноводная) slow-wave guide; ( коаксиальная) wave delay line
    замедля́ющая, встре́чно-стержнева́я систе́ма — interdigital [interdigitated] slow-wave structure
    замедля́ющая, гребе́нчатая систе́ма — vane-line slow-wave structure, finned slow-wave guide
    замедля́ющая, спира́льная систе́ма — helical slow-wave structure
    за́мкнутая систе́ма — closed system
    систе́ма за́писи вчт.writing system
    запомина́ющая систе́ма вчт.storage system
    систе́ма затопле́ния мор.flood(ing) system
    систе́ма захо́да на поса́дку по кома́ндам с земли́ ав. — ground-controlled-approach [GCA] system
    зачи́стная систе́ма ( танкера) — stripping system
    систе́ма зерка́л Фабри́—Перо́ — Fabry-Perot [FP] mirror system
    зерка́льно-ли́нзовая систе́ма ( в микроскопе) — catadioptric system
    систе́ма золоудале́ния — ash-handling system
    систе́ма зо́льников кож. — lime yard, lime round
    изоли́рованная систе́ма — isolated system
    систе́ма индивидуа́льного вы́зова свз.paging system
    инерциа́льная систе́ма — inertial system
    информацио́нная систе́ма — information system
    информацио́нно-поиско́вая систе́ма — information retrieval system
    исхо́дная систе́ма — prototype [original] system
    канализацио́нная систе́ма — sewer(age) system
    канализацио́нная, общесплавна́я систе́ма — combined sewer(age) system
    канализацио́нная, разде́льная систе́ма — separate sewer(age) system
    систе́ма коди́рования — coding system
    колеба́тельная систе́ма — (преим. механическая) vibratory [vibrating] system; ( немеханическая) oscillatory [resonant] system
    колеба́тельная, многорезона́торная систе́ма ( магнетрона) — multiple-cavity resonator
    колориметри́ческая трёхцве́тная систе́ма — three-colour photometric system
    систе́ма кома́нд ЭВМ — instruction set of a computer, computer instruction set
    систе́ма координа́т — coordinate system
    свя́зывать систе́му координа́т с … — tie in a coordinate system with …, tie coordinate system to …
    систе́ма координа́т, инерциа́льная — inertial frame
    систе́ма координа́т, лаборато́рная — laboratory coordinate system, laboratory frame of reference
    систе́ма координа́т, ле́вая — left-handed coordinate system
    систе́ма координа́т, ме́стная — local (coordinate) system
    систе́ма координа́т, поко́ящаяся — rest (coordinate) system
    систе́ма координа́т, пото́чная аргд.(relative) wind coordinate system
    систе́ма координа́т, пра́вая — right-handed coordinate system
    систе́ма координа́т, свя́занная с дви́жущимся те́лом — body axes (coordinate) system
    систе́ма координа́т, свя́занная с Землё́й — fixed-in-the-earth (coordinate) system
    систе́ма корре́кции гироско́па — gyro monitor, (long-term) reference
    систе́ма корре́кции гироско́па, магни́тная — magnetic gyro monitor, magnetic reference
    систе́ма корре́кции гироско́па, ма́ятниковая — gravity gyro monitor, gravity reference
    систе́ма криволине́йных координа́т — curvilinear coordinate system
    курсова́я систе́ма ав. — directional heading [waiting] system
    ли́тниковая систе́ма — gating [pouring gate] system
    магни́тная систе́ма — magnetic system
    систе́ма ма́ссового обслу́живания — queueing [waiting] system
    систе́ма ма́ссового обслу́живания, сме́шанная — combined loss-delay queueing [waiting] system
    систе́ма ма́ссового обслу́живания с ожида́нием — delay queueing [waiting] system
    систе́ма ма́ссового обслу́живания с отка́зами — congestion queueing [waiting] system
    систе́ма ма́ссового обслу́живания с поте́рями — loss-type queueing [waiting] system
    мени́сковая систе́ма — meniscus [Maksutov] system
    систе́ма мер, метри́ческая — metric system
    систе́ма мер, типогра́фская — point system
    механи́ческая систе́ма — mechanical system
    механи́ческая, несвобо́дная систе́ма — constrained material system
    систе́ма мно́гих тел — many-body system
    многокана́льная систе́ма свз.multichannel system
    многокомпоне́нтная систе́ма — multicomponent system
    многоме́рная систе́ма — multivariable system
    модели́руемая систе́ма — prototype system
    мо́дульная систе́ма — modular system
    мультипле́ксная систе́ма — multiplex system
    систе́ма набо́ра ( корпуса судна) — framing system
    систе́ма набо́ра, кле́тчатая — cellular framing system
    систе́ма набо́ра, попере́чная — transverse framing system
    систе́ма набо́ра, продо́льная — longitudinal framing system
    систе́ма набо́ра, сме́шанная — mixed framing system
    систе́ма навига́ции — navigation system
    систе́ма навига́ции, автоно́мная — self-contained navigation system
    систе́ма навига́ции, гиперболи́ческая — hyperbolic navigation system
    систе́ма навига́ции, дальноме́рная — rho-rho [ - ] navigation system
    систе́ма навига́ции, дальноме́рно-угломе́рная — rho-theta [ - ] navigation system
    систе́ма навига́ции, кругова́я — rho-rho [ - ] navigation system
    систе́ма навига́ции, ра́зностно-дальноме́рная [РДНС] — hyperbolic navigation system
    систе́ма навига́ции, угломе́рная — theta-theta [ - ] navigation system
    систе́ма на стру́йных элеме́нтах, логи́ческая — fluid logic system
    систе́ма нумера́ции тлф.numbering scheme
    систе́ма обду́ва стё́кол авто, автмт.demister
    систе́ма обнаруже́ния оши́бок ( в передаче данных) свз.error detection system
    систе́ма обогре́ва стё́кол авто, ав.defroster
    систе́ма обозначе́ний — notation, symbolism
    систе́ма обозначе́ний Междунаро́дного нау́чного радиообъедине́ния — URSI symbol system
    систе́ма обозначе́ния про́бы, кара́тная — carat test sign system
    систе́ма обозначе́ния про́бы, метри́ческая — metric test sign system
    обора́чивающая систе́ма опт. — erecting [inversion (optical)] system
    обора́чивающая, при́зменная систе́ма опт.prism-erecting (optical) system
    систе́ма обрабо́тки да́нных — data processing [dp] system
    систе́ма обрабо́тки да́нных в реа́льном масшта́бе вре́мени — real time data processing system
    систе́ма обрабо́тки да́нных, операти́вная — on-line data processing system
    систе́ма обрабо́тки отхо́дов — waste treatment system
    систе́ма объё́много пожаротуше́ния мор.fire-smothering system
    одноотка́зная систе́ма — fall-safe system
    опти́ческая систе́ма — optical system, optical train
    опти́ческая, зерка́льно-ли́нзовая систе́ма — catadioptric system
    систе́ма ориента́ции ав.attitude control system
    ороси́тельная систе́ма — irrigation system, irrigation project
    систе́ма ороше́ния мор.sprinkling system
    систе́ма освеще́ния — lighting (system)
    осуши́тельная систе́ма мор.drain(age) system
    систе́ма отбо́ра во́здуха от компре́ссора — compressor air-bleed system
    систе́ма отве́рстия ( в допусках и посадках) — the basic hole system
    отклоня́ющая систе́ма ( в ЭЛТ) — deflecting system, deflection yoke
    отклоня́ющая, ка́дровая систе́ма — vertical (deflection) yoke
    отклоня́ющая, магни́тная систе́ма — magnetic (deflection) yoke
    отклоня́ющая, стро́чная систе́ма — horizontal [line] (deflection) yoke
    систе́ма относи́тельных едини́ц — per-unit system
    отопи́тельная систе́ма — heating system
    отопи́тельная систе́ма с разво́дкой све́рху — down-feed heating system
    отопи́тельная систе́ма с разво́дкой сни́зу — up-feed heating system
    систе́ма отсчё́та — frame of reference, (reference) frame, reference system
    систе́ма отсчё́та, инерциа́льная — inertial frame of reference
    систе́ма охлажде́ния — cooling system
    систе́ма охлажде́ния, возду́шная — air-cooling system
    систе́ма охлажде́ния, жи́дкостная — liquid-cooling system
    систе́ма охлажде́ния, испари́тельная — evaporative cooling system
    систе́ма охлажде́ния, каска́дная — cascade refrigeration system
    систе́ма охлажде́ния непосре́дственным испаре́нием холоди́льного аге́нта — direct expansion system
    систе́ма охлажде́ния, пане́льная — panel cooling system
    систе́ма охлажде́ния, рассо́льная, двухтемперату́рная — dual-temperature brine refrigeration system
    систе́ма охлажде́ния, рассо́льная, закры́тая — closed brine cooling system
    систе́ма охлажде́ния, рассо́льная, с испаре́нием — brine spray cooling system
    систе́ма охлажде́ния с теплозащи́тной руба́шкой — jacketed cooling system
    систе́ма очи́стки воды́ — water purification system
    систе́ма па́мяти — memory [storage] system
    систе́ма парашю́та, подвесна́я — parachute harness
    систе́ма переда́чи да́нных — data transmission system
    систе́ма переда́чи да́нных с обра́тной свя́зью — information feedback data transmission system
    систе́ма переда́чи да́нных с коммута́цией сообще́ний и промежу́точным хране́нием — store-and-forward data network
    систе́ма переда́чи да́нных с реша́ющей обра́тной свя́зью — decision feedback data transmission system
    систе́ма переда́чи и́мпульсов набо́ра, шле́йфная тлф.loop dialling system
    систе́ма переда́чи на одно́й боково́й полосе́ и пода́вленной несу́щей — single-sideband suppressed-carrier [SSB-SC] system
    систе́ма переда́чи на одно́й боково́й полосе́ с осла́бленной несу́щей — single-sideband reduced carrier [SSB-RC] system
    систе́ма пита́ния двс.fuel system
    систе́ма пита́ния котла́ — boiler-feed piping system
    систе́ма питьево́й воды́ мор. — drinking-water [portable-water] system
    систе́ма пода́чи то́плива, вытесни́тельная — pressure feeding system
    систе́ма пода́чи то́плива самотё́ком — gravity feeding system
    систе́ма пода́чи то́плива, турбонасо́сная — turbopump feeding system
    подви́жная систе́ма ( измерительного прибора) — moving element (movement не рекомендован соответствующими стандартами)
    систе́ма пожа́рной сигнализа́ции — fire-alarm system
    систе́ма пожаротуше́нения — fire-extinguishing system
    систе́ма поса́дки — landing system
    систе́ма поса́дки по прибо́рам — instrument landing system (сокращение ILS относится к международной системе, советская система обозначается СПinstrument landing system)
    систе́ма проду́вки автоscavenging system
    противообледени́тельная систе́ма ав. — ( для предотвращения образования льда) anti-icing [ice protection] system; ( для удаления образовавшегося льда) de-icing system
    противопожа́рная систе́ма — fire-extinguishing system
    противото́чная систе́ма — counter-current flow system
    систе́ма прямо́го перено́са ( электроннооптического преобразователя) — proximity focused system
    прямото́чная систе́ма — direct-flow system
    систе́ма прямоуго́льных координа́т — Cartesian [rectangular] coordinate system
    систе́ма, рабо́тающая в и́стинном масшта́бе вре́мени — real-time system
    радиолокацио́нная, втори́чная систе́ма УВД — ( для работы внутри СССР) SSR system; ( отвечающая нормам ИКАО) ICAO SSR system
    радиолокацио́нная систе́ма с электро́нным скани́рованием — electronic scanning radar system, ESRS
    радиомая́чная систе́ма — radio range
    радиомая́чная, многокана́льная систе́ма — multitrack radio range
    систе́ма радионавига́ции — radio-navigation system (см. тж. система навигации)
    развё́ртывающая систе́ма тлв.scanning system
    систе́ма разрабо́тки — mining system, method of mining
    распредели́тельная систе́ма — distribution system
    регенерати́вная систе́ма тепл.feed heating system
    резерви́рованная систе́ма — redundant system
    систе́ма ремне́й, подвесна́я ( респиратора) — harness
    систе́ма ру́бок лес.cutting system
    самонастра́ивающаяся систе́ма — self-adjusting system
    самообуча́ющаяся систе́ма киб.learning system
    самоорганизу́ющаяся систе́ма — self-organizing system
    самоприспоса́бливающаяся систе́ма киб.adaptive system
    самоуравнове́шивающаяся систе́ма — self-balancing system
    самоусоверше́нствующаяся систе́ма — evolutionary system
    санита́рная систе́ма мор.sanitary system
    систе́ма свя́зи — communication system
    сопряга́ть систе́му свя́зи, напр. с ЭВМ — interface a communication network with, e. g., a computer
    уплотня́ть систе́му свя́зи телегра́фными кана́лами — multiplex telegraph channels on a communication link
    систе́ма свя́зи, асинхро́нная — asyncronous communication system
    систе́ма свя́зи, двои́чная — binary communication system
    систе́ма свя́зи, многокана́льная — multi-channel communication system
    систе́ма свя́зи на метео́рных вспы́шках — meteor burst [meteor-scatter] communication system
    систе́ма свя́зи, разветвлё́нная — deployed communication system
    систе́ма свя́зи с испо́льзованием да́льнего тропосфе́рного рассе́яния — troposcatter communication system
    систе́ма свя́зи с испо́льзованием ионосфе́рного рассе́яния — ionoscatter communication system
    систе́ма свя́зи с переспро́сом — ARQ communication system
    систе́ма свя́зи, уплотнё́нная — multiplex communication system
    систе́ма свя́зи, уплотнё́нная, с временны́м разделе́нием сигна́лов — time division multiplex [TDM] communication system
    систе́ма свя́зи, уплотнё́нная, с разделе́нием по ко́дам — code-division multiplex(ing) communication system
    систе́ма свя́зи, уплотнё́нная, с часто́тным разделе́нием сигна́лов — frequency division multiplex [FDM] communication system
    сельси́нная систе́ма — synchro system
    сельси́нная систе́ма в индика́торном режи́ме — synchro-repeater [direct-transmission synchro] system
    сельси́нная систе́ма в трансформа́торном режи́ме — synchro-detector [control-transformer synchro] system
    сельси́нная, двухотсчё́тная систе́ма — two-speed [coarse-fine] synchro system
    сельси́нная, дифференциа́льная систе́ма — differential synchro system
    сельси́нная, одноотсчё́тная систе́ма — singlespeed synchro system
    систе́ма сил — force system
    систе́ма синхрониза́ции — timing [synchronizing] mechanism
    синхро́нная систе́ма — synchronous system
    следя́щая систе́ма — servo (system)
    следя́щая, позицио́нная систе́ма — positional servo (system)
    следя́щая систе́ма с не́сколькими входны́ми возде́йствиями — multi-input servo (system)
    следя́щая систе́ма с предваре́нием — predictor servo (system)
    систе́ма слеже́ния — tracking system
    систе́ма слеже́ния по да́льности — range tracking system
    систе́ма слеже́ния по ско́рости измене́ния да́льности — range rate tracking system
    систе́ма сма́зки — lubrication (system)
    систе́ма сма́зки, принуди́тельная — force(-feed) lubrication (system)
    систе́ма сма́зки, разбры́згивающая — splash lubrication (system)
    сма́зочная систе́ма — lubrication (system)
    систе́ма с мно́гими переме́нными — multivariable system
    систе́ма сниже́ния шу́ма — noise reduction system
    систе́ма с обра́тной свя́зью — feedback system
    Со́лнечная систе́ма — solar system
    систе́ма сопровожде́ния — tracking system
    систе́ма со свобо́дными пове́рхностями — unbounded system
    систе́ма с пара́метрами, изменя́ющимися во вре́мени — time variable [time-variant] system
    систе́ма с постоя́нным резерви́рованием — parallel-redundant system
    систе́ма с разделе́нием вре́мени — time-sharing system
    систе́ма с распределё́нными пара́метрами — distributed parameter system
    систе́ма с самоизменя́ющейся структу́рой — self-structuring system
    систе́ма с сосредото́ченными пара́метрами — lumped-parameter [lumped-constant] system
    стати́ческая систе́ма — киб. constant-error system; ( в следящих системах) type O servo system
    систе́ма, стати́чески неопредели́мая мех.statically indeterminate system
    систе́ма, стати́чески определи́мая мех.statically determinate system
    систе́ма стира́ния ( записи) — erasing system
    стохасти́ческая систе́ма — stochastic system
    сто́чная систе́ма мор.deck drain system
    судова́я систе́ма — ship system
    систе́ма с фикси́рованными грани́цами — bounded system
    систе́ма счисле́ния — number(ing) system, notation
    систе́ма счисле́ния, восьмери́чная — octal number system, octonary notation
    систе́ма счисле́ния, двенадцатери́чная — duodecimal number system, duodecimal notation
    систе́ма счисле́ния, двои́чная — binary system, binary notation
    систе́ма счисле́ния, двои́чно-десяти́чная — binary-coded decimal system, binary-coded decimal [BCD] notation
    систе́ма счисле́ния, девятери́чная — nine number system
    систе́ма счисле́ния, десяти́чная — decimal number system, decimal notation
    систе́ма счисле́ния, непозицио́нная — non-positional notation
    систе́ма счисле́ния, позицио́нная — positional number notation
    систе́ма счисле́ния пути́, возду́шно-до́плеровская навиг.airborne Doppler navigator
    систе́ма счисле́ния, трои́чная — ternary number system, ternary notation
    систе́ма счисле́ния, шестнадцатери́чная — hexadecimal number system, hexadecimal notation
    телевизио́нная светокла́панная систе́ма — light-modulator [light-modulating] television system
    телегра́фная многокра́тная систе́ма ( с временным распределением) — time-division multiplex (transmission), time division telegraph system
    телеметри́ческая систе́ма — telemetering system
    телеметри́ческая, промы́шленная систе́ма — industrial telemetering system
    телеметри́ческая, то́ковая систе́ма — current-type telemeter
    телеметри́ческая, часто́тная систе́ма — frequency-type telemeter
    телефо́нная, автомати́ческая систе́ма — dial telephone system
    телефо́нная систе́ма с ручны́м обслу́живанием — manual-switchboard telephone system
    термодинами́ческая систе́ма — thermodynamic system
    техни́ческая систе́ма (в отличие от естественных, математических и т. п.) — engineering system
    систе́ма тона́льного телеграфи́рования — voice-frequency multichannel system
    то́пливная систе́ма — fuel system
    то́пливная систе́ма с пода́чей само́тёком — gravity fuel system
    тормозна́я систе́ма ( автомобиля) — brake system
    трёхкомпоне́нтная систе́ма — ternary [three-component] system
    трёхпроводна́я систе́ма эл.three-wire system
    трёхфа́зная систе́ма эл.three-phase system
    трёхфа́зная систе́ма с глухозаземлё́нной нейтра́лью эл.solidly-earthed-neutral three-phase system
    трёхфа́зная, симметри́чная систе́ма эл.symmetrical three-phase system
    трёхфа́зная систе́ма с незаземлё́нной нейтра́лью эл.isolated-neutral three-phase system
    трю́мная систе́ма мор.bilge system
    систе́ма тяг — linkage
    тя́го-дутьева́я систе́ма — draught system
    систе́ма УВД — air traffic control [ATC] system
    систе́ма управле́ния — control system
    систе́ма управле́ния, автомати́ческая — automatic control system
    систе́ма управле́ния без па́мяти — combinational (control) system
    систе́ма управле́ния возду́шным движе́нием — air traffic control [ATC] system
    систе́ма управле́ния произво́дством [предприя́тием], автоматизи́рованная [АСУП] — management information system, MIS
    систе́ма управле́ния с вычисли́тельной маши́ной — computer control system
    систе́ма управле́ния с па́мятью — sequential (control) system
    систе́ма управле́ния с предсказа́нием — predictor control system
    систе́ма управле́ния технологи́ческим проце́ссом, автоматизи́рованная [АСУТП] — (automatic) process control system
    систе́ма управле́ния, цифрова́я — digital control system
    управля́емая систе́ма ( объект управления) — controlled system, controlled plant
    управля́ющая систе́ма ( часть системы управления) — controlling (sub-)system
    упру́гая систе́ма ( гравиметра) — elastic system
    систе́ма уравне́ний — set [system] of equations, set of simultaneous equations
    систе́ма уравне́ния объё́ма ( ядерного реактора) — pressurizing system
    уравнове́шенная систе́ма — balanced system
    усто́йчивая систе́ма — stable system
    фа́новая систе́ма мор. — flushing [sewage-disposal] system
    систе́ма физи́ческих величи́н — system of physical quantities
    хи́мико-технологи́ческая систе́ма — chemical engineering system
    хими́ческая систе́ма — chemical system
    систе́ма ЦБ-АТС тлф.dial system
    систе́ма цветно́го телеви́дения, совмести́мая — compatible colour-television system
    систе́ма це́нтра масс — centre-of-mass [centre-of-gravity, centre-of-momentum] system
    систе́ма цифрово́го управле́ния ( не путать с числовы́м управле́нием) — digital control system (not to be confused with numeric control system)
    систе́ма «челове́к — маши́на» — man-machine system
    шарни́рная систе́ма — hinged system
    шарни́рно-стержнева́я систе́ма — hinged-rod system
    шпре́нгельная систе́ма — strutted [truss] system
    систе́ма эксплуата́ции телефо́нной свя́зи, заказна́я — delay operation
    систе́ма эксплуата́ции телефо́нной свя́зи, ско́рая — demand working, telephone traffic on the demand basis
    экстрема́льная систе́ма — extremal system
    систе́ма электро́дов ЭЛТ — CRT electrode structure
    электроже́зловая систе́ма ж.-д.(electric) token system
    электрохими́ческая систе́ма — electrochemical system
    электрохими́ческая, необрати́мая систе́ма — irreversible electrochemical system
    электрохими́ческая, обрати́мая систе́ма — reversible electrochemical system
    электроэнергети́ческая систе́ма — electric power system
    систе́ма элеме́нтов Менделе́ева, периоди́ческая — Mendeleeff's [Mendeleev's, periodic] law, periodic system, periodic table
    систе́ма элеме́нтов ЦВМ — computer building-block range
    энергети́ческая систе́ма — power system
    энергети́ческая, еди́ная систе́ма — power grid
    энергети́ческая, объединё́нная систе́ма — interconnected power system

    Русско-английский политехнический словарь > система

  • 7 вычислительный

    3) Mathematics: computation, digital
    4) Information technology: calculating
    5) Programming: process
    6) Automation: computable
    7) Makarov: computer, counting

    Универсальный русско-английский словарь > вычислительный

  • 8 процессор

    1) General subject: processor
    3) Engineering: computer, computing engine, data path (обработки), engine, process control computer, processing unit
    5) Telecommunications: data processor
    6) Information technology: processor (устройство или обрабатывающая программа), processor unit, central processing unit, CPU
    9) Cellular communications: chipset

    Универсальный русско-английский словарь > процессор

См. также в других словарях:

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