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1 human visual system
English-Russian dictionary of computer science and programming > human visual system
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2 system
1) система || системный2) система; установка; устройство; комплекс3) программа•- adaptive control system
- address selection system
- addressing system
- advice-giving system
- AI planning system
- AI system
- analog computing system
- analog-digital computing system
- analysis information system
- application system
- arabic number system
- arithmetic system
- assembly system
- asymmetrical system
- atomic system
- attached processor system
- audio system
- authoring system
- automated office system
- automatic block system
- automatic checkout system
- automatic control system
- automatic search system
- automatic test system
- automatically programmed system
- automatically taught system
- autoprogrammable system
- axiomatic system
- backup system
- bad system
- bang-bang system
- base-2 system
- basic system
- batch-processing system
- binary system
- binary-coded decimal system
- binary-number system
- biquinary system
- bit-mapped system
- bit-slice system
- black-board expert system
- block parity system
- buddy system
- business system
- bus-oriented system
- bussed system
- CAD system
- call-reply system
- carrier system
- cause-controlled system
- character recognition system
- character-reading system
- chargeback system
- check sum error-detecting system
- chip-layout system
- clock system
- closed loop system
- closed system
- co-authoring system
- code recognition system
- code system
- coded-decimal system
- code-dependent system
- code-insensitive system
- code-sensitive system
- code-transparent system
- coding system
- coincident selection system
- cold system
- color-coded system
- command system
- common-bus system
- communication data system
- communications-oriented system
- complete articulated system
- computer system
- computer-aided design system
- computer-aided system
- computer-based system
- computer-based weapon system
- computerized system
- computing system
- concatenated coding system
- concealment system
- conservative system
- contention system
- continuous presence system
- control system
- controlled system
- controlling system
- coordinate system
- cordonnier system
- costrained vision system
- cross system
- crossbar switch system
- data acquisition system
- data collection system
- data exchange system
- data flow system
- data gethering system
- data handling system
- data management system
- data preparation system
- data processing system
- data reduction system
- data retrieval system
- data storage system
- data system
- data transmission system
- database management system
- database support system
- data-managed system
- decimal number system
- decimal system
- decimal numeration system
- decision support system
- decision-aided system
- decision-making system
- decision-support system
- decision-taking system
- decoding selection system
- decomposable system
- dedicated system
- degenerate system
- design library support system
- design-automation system
- design-verification system
- development support system
- development system
- digital communication system
- digital computing system
- direct-current system
- directly coupled system
- discrete system
- discrete-continuous system
- disk operating system
- display system
- distributed database management system
- distributed function system
- distributed intelligence system
- distributed parameter system
- distributed system
- distribution system
- double intermediate tape system
- down system
- drafting system
- dual system
- dual-computer system
- dual-processor system
- duodecimal number system
- duodecimal system
- duotricenary number system
- duotricenary system
- duplexed computer system
- duplex computer system
- dyadic number system
- dyadic system
- dynamic mapping system
- dynamic scene system
- dynamic support system
- electronic data processing system
- electronic sorting system
- encoding system
- equipment adapted data system
- erasing system
- error-controlled system
- error-correcting system
- error-detecting system
- executive file-control system
- executive system
- expert control system
- expert support system
- expert system
- expert-planning system
- externally pulsed system
- fail-safe system
- fail-soft system
- fan-out system
- fault-tolerant system
- feasible system
- federated system
- feed system
- feedback system
- feedforward control system
- fiche retrieval system
- file control system
- file system
- fixed-lenght record system
- fixed-point system
- fixed-radix numeration system
- floating-point system
- fluid transport system
- follow-up system
- forgiving system
- front-end system
- fuzzy expert system
- generic expert system
- geographically distributed system
- goal-seeking system
- good system
- graceful degradation system
- graphic data system
- graphics display system
- graphics system
- help system
- heterogeneous system
- hexadecimal number system
- hexadecimal system - host system
- hostless system
- host-satellite system
- human visual system
- hunting system
- hypermedia system
- imaging system
- incremental system
- independent system
- indirectly coupled system
- information storage and retrieval system
- information retrieval system
- information handling system
- information management system
- information processing system
- information system
- information-feedback system
- in-plant system
- input/output control system
- instruction system
- instrumentation management system
- integrated system
- intelligence system
- interactive control system
- interactive system
- intercommunicating system
- interlock system
- internal number system
- internal system
- Internet-enabled system
- interrupt system
- isolated system
- kernel system
- key-to-disk/tape system
- knowledge base management system
- knowledge system
- knowledge-based system
- large-scale computing system
- laser communication system
- layered control system - lexicon-driven system
- library reference system
- local-network system
- long-haul system
- lumped-parameter system
- machine tool control system
- machine-limited system
- machine-oriented programming system
- macroinstruction system
- macro system
- magnetic memory system
- magnetic recording system
- magnetic tape plotting system
- mail message system
- mail system
- mailbox system
- management information system
- man-machine system
- mapping system
- map-reading system
- mass memory system
- mass storage system
- master/slave system
- matrix memory system
- memory driver system
- memory system
- message handling system
- message system
- microcomputer system
- microfilm printing system
- midsplit system
- MIMO system
- mixed-base numbering system
- mixed-base number system
- mixed-radix numeration system
- model-based expert system
- modular system
- monitoring system
- monitor system
- mosaic system - multicomputer system
- multidimensional system
- multifrequency system
- multilevel storage system
- multiloop system
- multimaster communication system
- multimicroprocessor system
- multiple computation system
- multiple-bus system
- multiple-coincident magnetic storage system
- multiple-output control system
- multiplex system
- multiport system
- multiprocessing system
- multiprocessor system
- multiprogramming computer system
- multiprogramming system
- multisite system
- multispeaker system
- multistable system
- multitasking operating system
- multiterminal system
- multiuser computer system
- multiuser system
- multiuser operating system
- multivariable system
- multivariate system
- negative-base number representation system
- negative-base number system
- network operating system
- node-replicated system
- noncomputerized system
- nonconsistently based number system
- nondegenerate system
- number representation system
- numbering system
- number system
- numeral system
- numeration system
- numerical system
- octal number system
- octal system
- office automation system
- off-line system
- on-demand system
- one-level storage system
- one-loop system
- one-over-one address system
- on-line system
- open-ended system
- open system
- open-loop system
- operating system
- operational system
- optical memory system
- overdetermined system
- overload-hold system
- page-on-demand system
- panelboard system
- paper-tape system
- parameter-driven expert system
- pattern recognition system
- peek-a-boo system
- peripheral system
- pipeline system
- polled system
- polymorphic system
- polyphase system
- portable system
- positional representation system
- Post-production system
- priority scheduling system
- priority system
- procedural expert system
- process control system
- processor-sharing system
- production control system
- production system
- program system
- programming system
- protection system
- pulse system
- pulse-or-no-pulse system
- pulse-signal system
- punch card computer system
- pure-binary numeration system
- purposeful system
- quadruplex system
- question-answering system
- queueing system
- queue system
- radix numbering system
- radix number system
- reactive system
- reading system
- real-time expert system
- real-time operating system
- real-time system
- reasoning system
- recognition system
- recording system
- recovery system
- reduntant number system
- reduntant system
- reflected binary number system
- reflected binary system
- refreshment system
- remote-access system
- replicating system
- representation system
- request-repeat system
- rerecording system
- residue number system
- residue system
- resource-sharing system
- restorable system
- retrieval system
- retrieval-only system - robotic system
- robot system
- rule-based expert system
- rule-based system
- scalable system
- selection system
- self-adapting system
- self-adjusting system
- self-aligning system
- self-balancing system
- self-check system
- self-contained system
- self-correcting system
- self-descriptive system
- self-learning system
- self-organizing system
- self-sustained oscillation system
- self-test system
- sensor-based system
- sequential scheduling system
- sexadecimal number system
- sexadecimal system
- shared-files system
- shell expert system
- silicon-development system
- simplex system
- single-drive system
- single-inheritance system
- single-phase clock system
- single-site system
- single-user computer system
- SISO system
- skeletal expert system
- slave system
- soft-sectored disk system
- software system
- sound system
- source code control system
- source-destination system
- space-division system
- stabilizing system
- stable system
- stand-alone system
- start-stop system
- state-determined system
- stepped start-stop system
- stereo system
- stochastically disturbed system
- storage system
- stripped-down expert system
- subsplit system
- supervisor control system
- switching system
- symbolic assembly system
- syntactical system
- system explanation system
- system of logic
- system of notation
- system with delay
- system with time lag
- tabulating system
- tape data processing system
- tape drive system
- tape handling system
- tape operating system
- tape plotting system
- tape resident system
- tape-oriented system
- target system
- taught system
- telecommunictions system
- telecontrol system
- terminal system
- ternary number system
- ternary system
- test system
- testbed system
- text-to-speech system
- time-division system
- time-pattern control system
- time-shared system
- time-shared-bus system
- time-sharing system
- timing system
- total system
- translating system
- translation system
- translator writing system
- transmitting system
- tree-structured system
- trusted computer system
- two-failure mode system
- two-level return system
- two-level system
- two-phase clock system
- ultrastable system
- Unified system
- uninterruptible power system
- uniprocessor system
- unrestorable system
- unstable system
- up system
- variable-lenght record system
- virtual system
- virtual-memory operating system
- vision system
- visual system
- voice/audio processing system
- voice-response system
- volunteer system
- weighted number system
- weighted system
- writing system
- xerox copy system
- zero-one systemEnglish-Russian dictionary of computer science and programming > system
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3 visual processing
обработка графических, визуальных и/или видеоданных; визуальное восприятиек этой области относятся различные компьютерные технологии распознавания (опознавания).This information probably will be presented in graphical form, to exploit more fully the large fraction of the human brain devoted to visual processing and the visual system's pattern recognition ability. — Эта информация будет, по-видимому, представляться в графической форме, чтобы наиболее полно использовать большую часть человеческого мозга, отвечающую за визуальное восприятие, и возможности распознавания образов, присущие компьютерной системе визуализации (обработки визуальных данных) см. тж. graphical form, recognition, visual system
Англо-русский толковый словарь терминов и сокращений по ВТ, Интернету и программированию. > visual processing
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4 system
1) система || системный3) вчт операционная система; программа-супервизор5) вчт большая программа6) метод; способ; алгоритм•system halted — "система остановлена" ( экранное сообщение об остановке компьютера при наличии серьёзной ошибки)
- CPsystem- H-system- h-system- hydrogen-air/lead battery hybrid system- Ksystem- Lsystem- L*a*b* system- master/slave computer system- p-system- y-system- Δ-system -
5 зрительная система человека
human visual systemБольшой англо-русский и русско-английский словарь > зрительная система человека
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6 HVS
(Human Visual System) система визуализации для человека, алгоритм HVSобработка цветов с предпочтением оттенкам, к которым наиболее чувствителен глаз человекаАнгло-русский толковый словарь терминов и сокращений по ВТ, Интернету и программированию. > HVS
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7 HVS
1) Медицина: hyperventilation syndrome2) Военный термин: high-value ship3) Техника: high-voltage switch, high-volume sampler4) Автомобильный термин: high voltage switch5) Физиология: Human Visual System6) Фирменный знак: Hospitality Valuation Services7) Химическое оружие: High volume sampler8) Должность: High Vaginal Swab -
8 Bibliography
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E. Hinton (1986). Schemata and sequential thought processes in PDP models. In J. L. McClelland, D. E. Rumelhart & the PDP Research Group (Eds.), Parallel Distributed Processing (Vol. 2, pp. 7-57). Cambridge, MA: MIT Press.■ Russell, B. (1927). An outline of philosophy. London: G. Allen & Unwin.■ Russell, B. (1961). History of Western philosophy. London: George Allen & Unwin.■ Russell, B. (1965). How I write. In Portraits from memory and other essays. London: Allen & Unwin.■ Russell, B. (1992). In N. Griffin (Ed.), The selected letters of Bertrand Russell (Vol. 1), The private years, 1884- 1914. Boston: Houghton Mifflin. Ryecroft, C. (1966). Psychoanalysis observed. London: Constable.■ Sagan, C. (1978). The dragons of Eden: Speculations on the evolution of human intel ligence. New York: Ballantine Books.■ Salthouse, T. A. (1992). Expertise as the circumvention of human processing limitations. In K. A. Ericsson & J. Smith (Eds.), Toward a general theory of expertise: Prospects and limits (pp. 172-194). Cambridge: Cambridge University Press.■ Sanford, A. J. (1987). The mind of man: Models of human understanding. New Haven, CT: Yale University Press.■ Sapir, E. (1921). Language. New York: Harcourt, Brace, and World.■ Sapir, E. (1964). Culture, language, and personality. Berkeley: University of California Press. (Originally published in 1941.)■ Sapir, E. (1985). The status of linguistics as a science. In D. G. Mandelbaum (Ed.), Selected writings of Edward Sapir in language, culture and personality (pp. 160166). Berkeley: University of California Press. (Originally published in 1929).■ Scardmalia, M., & C. Bereiter (1992). Literate expertise. In K. A. Ericsson & J. Smith (Eds.), Toward a general theory of expertise: Prospects and limits (pp. 172-194). Cambridge: Cambridge University Press.■ Schafer, R. (1954). Psychoanalytic interpretation in Rorschach testing. New York: Grune & Stratten.■ Schank, R. C. (1973). Identification of conceptualizations underlying natural language. In R. C. Schank & K. M. Colby (Eds.), Computer models of thought and language (pp. 187-248). San Francisco: W. H. Freeman.■ Schank, R. C. (1976). The role of memory in language processing. In C. N. Cofer (Ed.), The structure of human memory. (pp. 162-189) San Francisco: W. H. Freeman.■ Schank, R. C. (1986). Explanation patterns: Understanding mechanically and creatively. Hillsdale, NJ: Lawrence Erlbaum Associates.■ Schank, R. C., & R. P. Abelson (1977). Scripts, plans, goals, and understanding. Hillsdale, NJ: Lawrence Erlbaum Associates.■ SchroЁdinger, E. (1951). Science and humanism. Cambridge: Cambridge University Press.■ Searle, J. R. (1981a). Minds, brains, and programs. In J. Haugeland (Ed.), Mind design: Philosophy, psychology, artificial intelligence (pp. 282-306). Cambridge, MA: MIT Press.■ Searle, J. R. (1981b). Minds, brains and programs. In D. Hofstadter & D. Dennett (Eds.), The mind's I (pp. 353-373). New York: Basic Books.■ Searle, J. R. (1983). Intentionality. New York: Cambridge University Press.■ Serres, M. (1982). The origin of language: Biology, information theory, and thermodynamics. M. Anderson (Trans.). In J. V. Harari & D. F. Bell (Eds.), Hermes: Literature, science, philosophy (pp. 71-83). Baltimore: Johns Hopkins University Press.■ Simon, H. A. (1966). Scientific discovery and the psychology of problem solving. In R. G. Colodny (Ed.), Mind and cosmos: Essays in contemporary science and philosophy (pp. 22-40). Pittsburgh: University of Pittsburgh Press.■ Simon, H. A. (1979). Models of thought. New Haven, CT: Yale University Press.■ Simon, H. A. (1989). The scientist as a problem solver. In D. Klahr & K. Kotovsky (Eds.), Complex information processing: The impact of Herbert Simon. Hillsdale, N.J.: Lawrence Erlbaum Associates.■ Simon, H. A., & C. Kaplan (1989). Foundations of cognitive science. In M. Posner (Ed.), Foundations of cognitive science (pp. 1-47). Cambridge, MA: MIT Press.■ Simonton, D. K. (1988). Creativity, leadership and chance. In R. J. Sternberg (Ed.), The nature of creativity. Cambridge: Cambridge University Press.■ Skinner, B. F. (1974). About behaviorism. New York: Knopf.■ Smith, E. E. (1988). Concepts and thought. In J. Sternberg & E. E. Smith (Eds.), The psychology of human thought (pp. 19-49). Cambridge: Cambridge University Press.■ Smith, E. E. (1990). Thinking: Introduction. In D. N. Osherson & E. E. Smith (Eds.), Thinking. An invitation to cognitive science. (Vol. 3, pp. 1-2). Cambridge, MA: MIT Press.■ Socrates. (1958). Meno. In E. H. Warmington & P. O. Rouse (Eds.), Great dialogues of Plato W.H.D. Rouse (Trans.). New York: New American Library. (Original publication date unknown.)■ Solso, R. L. (1974). Theories of retrieval. In R. L. Solso (Ed.), Theories in cognitive psychology. Potomac, MD: Lawrence Erlbaum Associates.■ Spencer, H. (1896). The principles of psychology. New York: Appleton-CenturyCrofts.■ Steiner, G. (1975). After Babel: Aspects of language and translation. New York: Oxford University Press.■ Sternberg, R. J. (1977). Intelligence, information processing, and analogical reasoning. Hillsdale, NJ: Lawrence Erlbaum Associates.■ Sternberg, R. J. (1994). Intelligence. In R. J. Sternberg, Thinking and problem solving. San Diego: Academic Press.■ Sternberg, R. J., & J. E. Davidson (1985). Cognitive development in gifted and talented. In F. D. Horowitz & M. O'Brien (Eds.), The gifted and talented (pp. 103-135). Washington, DC: American Psychological Association.■ Storr, A. (1993). The dynamics of creation. New York: Ballantine Books. (Originally published in 1972.)■ Stumpf, S. E. (1994). Philosophy: History and problems (5th ed.). New York: McGraw-Hill.■ Sulloway, F. J. (1996). Born to rebel: Birth order, family dynamics, and creative lives. New York: Random House/Vintage Books.■ Thorndike, E. L. (1906). Principles of teaching. New York: A. G. Seiler.■ Thorndike, E. L. (1970). Animal intelligence: Experimental studies. Darien, CT: Hafner Publishing Co. (Originally published in 1911.)■ Titchener, E. B. (1910). A textbook of psychology. New York: Macmillan.■ Titchener, E. B. (1914). A primer of psychology. New York: Macmillan.■ Toulmin, S. (1957). The philosophy of science. London: Hutchinson.■ Tulving, E. (1972). Episodic and semantic memory. In E. Tulving & W. Donaldson (Eds.), Organisation of memory. London: Academic Press.■ Turing, A. (1946). In B. E. Carpenter & R. W. Doran (Eds.), ACE reports of 1946 and other papers. Cambridge, MA: MIT Press.■ Turkle, S. (1984). Computers and the second self: Computers and the human spirit. New York: Simon & Schuster.■ Tyler, S. A. (1978). The said and the unsaid: Mind, meaning, and culture. New York: Academic Press.■ van Heijenoort (Ed.) (1967). From Frege to Goedel. Cambridge: Harvard University Press.■ Varela, F. J. (1984). The creative circle: Sketches on the natural history of circularity. In P. Watzlawick (Ed.), The invented reality (pp. 309-324). New York: W. W. Norton.■ Voltaire (1961). On the Penseґs of M. Pascal. In Philosophical letters (pp. 119-146). E. Dilworth (Trans.). Indianapolis: Bobbs-Merrill.■ Wagman, M. (1991a). Artificial intelligence and human cognition: A theoretical inter comparison of two realms of intellect. Westport, CT: Praeger.■ Wagman, M. (1991b). Cognitive science and concepts of mind: Toward a general theory of human and artificial intelligence. Westport, CT: Praeger.■ Wagman, M. (1993). Cognitive psychology and artificial intelligence: Theory and re search in cognitive science. Westport, CT: Praeger.■ Wagman, M. (1995). The sciences of cognition: Theory and research in psychology and artificial intelligence. Westport, CT: Praeger.■ Wagman, M. (1996). Human intellect and cognitive science: Toward a general unified theory of intelligence. Westport, CT: Praeger.■ Wagman, M. 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The psychology of computer vision. New York: McGrawHill.■ Wittgenstein, L. (1953). Philosophical investigations. Oxford: Basil Blackwell.■ Wittgenstein, L. (1958). The blue and brown books. New York: Harper Colophon.■ Woods, W. A. (1975). What's in a link: Foundations for semantic networks. In D. G. Bobrow & A. Collins (Eds.), Representations and understanding: Studies in cognitive science (pp. 35-84). New York: Academic Press.■ Woodworth, R. S. (1938). Experimental psychology. New York: Holt; London: Methuen (1939).■ Wundt, W. (1904). Principles of physiological psychology (Vol. 1). E. B. Titchener (Trans.). New York: Macmillan.■ Wundt, W. (1907). Lectures on human and animal psychology. J. E. Creighton & E. B. Titchener (Trans.). New York: Macmillan.■ Young, J. Z. (1978). Programs of the brain. New York: Oxford University Press.■ Ziman, J. (1978). Reliable knowledge: An exploration of the grounds for belief in science. Cambridge: Cambridge University Press.Historical dictionary of quotations in cognitive science > Bibliography
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9 Consciousness
Consciousness is what makes the mind-body problem really intractable.... Without consciousness the mind-body problem would be much less interesting. With consciousness it seems hopeless. (T. Nagel, 1979, pp. 165-166)This approach to understanding sensory qualia is both theoretically and empirically motivated... [;] it suggests an effective means of expressing the allegedly inexpressible. The "ineffable" pink of one's current visual sensation may be richly and precisely expressed as a 95Hz/80Hz/80Hz "chord" in the relevant triune cortical system. The "unconveyable" taste sensation produced by the fabled Australian health tonic Vegamite might be poignantly conveyed as a 85/80/90/15 "chord" in one's four channeled gustatory system.... And the "indescribably" olfactory sensation produced by a newly opened rose might be quite accurately described as a 95/35/10/80/60/55 "chord" in some six-dimensional space within one's olfactory bulb. (P. M. Churchland, 1989, p. 106)One of philosophy's favorite facets of mentality has received scant attention from cognitive psychologists, and that is consciousness itself: fullblown, introspective, inner-world phenomenological consciousness. In fact if one looks in the obvious places... one finds not so much a lack of interest as a deliberate and adroit avoidance of the issue. I think I know why. Consciousness appears to be the last bastion of occult properties, epiphenomena, and immeasurable subjective states-in short, the one area of mind best left to the philosophers, who are welcome to it. Let them make fools of themselves trying to corral the quicksilver of "phenomenology" into a respectable theory. (Dennett, 1978b, p. 149)When I am thinking about anything, my consciousness consists of a number of ideas.... But every idea can be resolved into elements... and these elements are sensations. (Titchener, 1910, p. 33)A Darwin machine now provides a framework for thinking about thought, indeed one that may be a reasonable first approximation to the actual brain machinery underlying thought. An intracerebral Darwin Machine need not try out one sequence at a time against memory; it may be able to try out dozens, if not hundreds, simultaneously, shape up new generations in milliseconds, and thus initiate insightful actions without overt trial and error. This massively parallel selection among stochastic sequences is more analogous to the ways of darwinian biology than to the "von Neumann" serial computer. Which is why I call it a Darwin Machine instead; it shapes up thoughts in milliseconds rather than millennia, and uses innocuous remembered environments rather than noxious real-life ones. It may well create the uniquely human aspect of our consciousness. (Calvin, 1990, pp. 261-262)To suppose the mind to exist in two different states, in the same moment, is a manifest absurdity. To the whole series of states of the mind, then, whatever the individual, momentary successive states may be, I give the name of our consciousness.... There are not sensations, thoughts, passions, and also consciousness, any more than there is quadruped or animal, as a separate being to be added to the wolves, tygers, elephants, and other living creatures.... The fallacy of conceiving consciousness to be something different from the feeling, which is said to be its object, has arisen, in a great measure, from the use of the personal pronoun I. (T. Brown, 1970, p. 336)The human capacity for speech is certainly unique. But the gulf between it and the behavior of animals no longer seems unbridgeable.... What does this leave us with, then, which is characteristically human?.... t resides in the human capacity for consciousness and self-consciousness. (Rose, 1976, p. 177)[Human consciousness] depends wholly on our seeing the outside world in such categories. And the problems of consciousness arise from putting reconstitution beside internalization, from our also being able to see ourselves as if we were objects in the outside world. That is in the very nature of language; it is impossible to have a symbolic system without it.... The Cartesian dualism between mind and body arises directly from this, and so do all the famous paradoxes, both in mathematics and in linguistics.... (Bronowski, 1978, pp. 38-39)It seems to me that there are at least four different viewpoints-or extremes of viewpoint-that one may reasonably hold on the matter [of computation and conscious thinking]:A. All thinking is computation; in particular, feelings of conscious awareness are evoked merely by the carrying out of appropriate computations.B. Awareness is a feature of the brain's physical action; and whereas any physical action can be simulated computationally, computational simulation cannot by itself evoke awareness.C. Appropriate physical action of the brain evokes awareness, but this physical action cannot even be properly simulated computationally.D. Awareness cannot be explained by physical, computational, or any other scientific terms. (Penrose, 1994, p. 12)Historical dictionary of quotations in cognitive science > Consciousness
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10 interface
1) граница раздела; поверхность раздела || разделять; являться границей или поверхностью раздела || граничный; расположенный на границе или поверхности раздела ( двух сред); разделяющий2) вчт интерфейс (программное или аппаратное средство взаимодействия и обмена информацией между устройствами, между программами, между устройствами и программами или между человеком и компьютером) || представлять собой интерфейс; служить интерфейсом; снабжать интерфейсом || интерфейсный3) сопряжение; стык; согласование || сопрягать; стыковать; согласовывать || сопрягающий; стыковочный; согласующий4) устройство сопряжения; стыковочный узел; согласующее устройство5) взаимодействие; связь || взаимодействовать; связывать(ся) || взаимодействующий; связанный6) средство взаимодействия; устройство связи7) смежная область (напр. наук) || смежный; относящийся к смежной области (напр. наук)•- air-epi interface
- Apple desktop interface - broadband interface
- call-level interface
- cathode interface
- CD-ROM interface
- channel interface
- chatbot interface
- command interface
- command-line interface
- common gateway interface - composite video interface - computer-to-cassette interface - desktop management interface
- dielectric interface
- diffuse interface
- digital-multiplexed interface - electrical interface
- enhanced IDE interface - expansion interface
- fiber channel interface - flat panel interface
- FP interface
- friendly user interface
- front-end interface
- general circuit interface - hard disk interface
- hardware interface
- head-disk interface
- heterojunction interface
- high performance parallel interface
- human-computer interface
- human-machine interface
- iconic interface
- IDE interface
- infrared interface
- input/output interface
- integrated device electronics interface
- intelligent interface - inter-carrier interface - intuitive user interface - keyboard interface
- land interface
- layered interface - man-computer interface
- man-machine interface - mouse interface
- multiple document interface - Panasonic interface
- parallel interface
- peripheral interface - p-n junction interface
- physical interface
- planar interface
- plastic interface - processor interface
- processor-to-cassette interface
- program interface
- programmable interface
- programmable communications interface
- programmable peripheral interface
- radar-computer interface - RGB TTL interface
- RS232 interface
- RS232C interface
- RS-422 interface
- satellite interface
- scalable coherent interface - seed-melt interface
- serial interface
- serial communication interface
- serial communication interface plus
- serial peripheral interface - software interface
- Sony interface - standard interface
- status control interface
- studio interface
- subscriber-line interface - system interface
- system programming interface
- tape drive interface
- tape backup drive interface - transmitter-receiver interface - visual interface
- WIMP interface -
11 interface
1) граница раздела; поверхность раздела || разделять; являться границей или поверхностью раздела || граничный; расположенный на границе или поверхности раздела ( двух сред); разделяющий2) вчт. интерфейс (программное или аппаратное средство взаимодействия и обмена информацией между устройствами, между программами, между устройствами и программами или между человеком и компьютером) || представлять собой интерфейс; служить интерфейсом; снабжать интерфейсом || интерфейсный3) сопряжение; стык; согласование || сопрягать; стыковать; согласовывать || сопрягающий; стыковочный; согласующий4) устройство сопряжения; стыковочный узел; согласующее устройство5) взаимодействие; связь || взаимодействовать; связывать(ся) || взаимодействующий; связанный6) средство взаимодействия; устройство связи7) смежная область (напр. наук) || смежный; относящийся к смежной области (напр. наук)•- advanced SCSI programming interface
- advanced technology attachment packet interface
- advanced technology attachment software programming interface
- AES/EBU interface
- air-epi interface
- Apple desktop interface
- application binary interface
- application programming interface
- application transaction management interface
- attachment unit interface
- Audio Engineering Society/European Broadcasting Union interface
- audio interface
- baseband interface
- basic rate interface
- BlueTooth interface
- Borland graphic interface
- brain-machine interface
- broadband interface
- call-level interface
- cathode interface
- CD-ROM interface
- channel interface
- chatbot interface
- command interface
- command-line interface
- common gateway interface
- common programming interface for communications
- communication interface
- composite video interface
- computer graphics interface
- computer interface
- computer-to-cassette interface
- computer-to-PBX interface
- copper distributed data interface
- data trunk interface
- deposit-substrate interface
- desktop management interface
- dielectric interface
- diffuse interface
- digital-multiplexed interface
- direct driver interface
- display control interface
- DOS protected mode interface
- EIA interface
- electrical interface
- enhanced IDE interface
- enhanced integrated device electronics interface
- enhanced small disk interface
- epi-substrate interface
- expansion interface
- fiber channel interface
- fiber distributed data interface
- film-substrate interface
- flat panel interface
- FP interface
- friendly user interface
- front-end interface
- general circuit interface
- graphic device interface
- graphical user interface
- growth interface
- hard disk interface
- hardware interface
- head-disk interface
- heterojunction interface
- high performance parallel interface
- human-computer interface
- human-machine interface
- iconic interface
- IDE interface
- infrared interface
- input/output interface
- integrated device electronics interface
- intelligent instrumentation interface
- intelligent interface
- intelligent peripheral interface
- interactive interface
- inter-carrier interface
- Internet server application programming interface
- inter-network interface
- intuitive user interface
- Java naming and directory interface
- JTAG interface
- keyboard interface
- land interface
- layered interface
- license server application programming interface
- local distributed data interface
- local management interface
- logical interface
- man-computer interface
- man-machine interface
- media control interface
- medium dependent interface
- medium independent interface
- memory interface
- message passing interface
- messaging application programming interface
- Mitsumi interface
- mouse interface
- multiple document interface
- musical instrument digital interface
- network application programming interface
- network terminal interface
- network-to-network interface
- object-oriented interface
- open applications interface
- open data-link interface
- open prepress interface
- Panasonic interface
- parallel interface
- peripheral interface
- phantom interface
- physical interface
- planar interface
- plastic interface
- p-n interface
- p-n junction interface
- portable operating system interface
- primary rate interface
- processor interface
- processor-to-cassette interface
- program interface
- programmable communications interface
- programmable interface
- programmable peripheral interface
- radar-computer interface
- remote desktop management interface
- remote user interface
- RGB analog interface
- RGB TTL interface
- RS232 interface
- RS232C interface
- RS-422 interface
- satellite interface
- scalable coherent interface
- SCSA device programming interface
- SCSI parallel interface
- seed-melt interface
- serial communication interface plus
- serial communication interface
- serial interface
- serial peripheral interface
- server-requestor programming interface
- shielded distributed data interface
- slider-disk interface
- small computer system interface
- social user interface
- software interface
- Sony interface
- Sony/Philips digital interface
- speaker voice identification application programming interface
- speech application programming interface
- speech recognition application programming interface
- standard interface
- status control interface
- studio interface
- subscriber line acoustic processing interface
- subscriber-line interface
- superconducting-normal interface
- system interface
- system programming interface
- tape backup drive interface
- tape drive interface
- telephony application programming interface
- telephony server application programming interface
- terminal interface
- transmitter-receiver interface
- twisted-pair distributed data interface
- user interface
- usernetwork interface
- user-to-network interface
- virtual control program interface
- virtual device interface
- visual interface
- WIMP interfaceThe New English-Russian Dictionary of Radio-electronics > interface
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12 interface
1) интерфейс (в языках программирования - видимая пользователю, в отличие от реализации (implementation), часть описания (функции, модуля, класса), определяющая способ их использования)- interface of class
- module interface(соглашения, определяющие способ использования данного приложения другим приложением)- host adapter interface
- narrow interface
- object interface
- open datalink interface
- personalized interface
- screen interface
- server interface(предоставляемая пользователю система окон, меню и других элементов управления, позволяющая общаться с данным приложением)Syn:4) (аппаратный) интерфейс (устройство сопряжения; сопряжение; средства сопряжения)5) сопряжение; согласование || сопрягать; согласовывать6) граница между двумя системами или приборами; место стыковки•- adaptive interface
- analog interface
- assistive user interface
- attachment-unit interface
- buffered interface
- bus interface
- bussed interface
- cable interface
- channel interface
- command-driven interface
- command-rich interface
- common user interface
- communications interface
- computer graphics interface
- computer-process interface
- contact interface
- cryptic interface
- current loop interface
- data interface
- diagnose interface
- direct interface
- DMA interface
- dummy-proof interface
- expert-friendly interface
- external interface
- file-based interface
- flexible interface
- gateway/network interface
- general-purpose interface
- general interface
- general-system interface
- graphical interface
- graphic interface
- graphical user interface
- graphic user interface
- hardware interface
- host interface
- human interface
- human-computer interface
- human-engineered interface
- human-machine interface
- hybrid interface
- I/O interface
- input-output interface
- intelligent interface
- intergateway interface
- interlevel interface
- invocation interface
- knowledgebase interface
- language interface
- loosely-coupled interface
- machine-machine interface
- man-machine interface
- master-slave interface
- memory interface
- menu-based interface
- menu-driven interface
- mouse interface
- multimedia interface
- natural interface
- natural language interface
- network interface
- NL interface
- N-wire interface
- open prepress interface
- organization interface
- packet-switching interface
- peripheral interface
- physical interface
- pin-level interface
- power interface
- procedural language interface
- processor interface
- programmable interface
- programmer interface
- seamless interface
- serial interface
- software-to-software interface
- standardized interface
- standard interface
- stream interface
- surface-perspective interface
- sw/hw interface
- task-constrained interface
- text-oriented interface
- transparent interface
- trigger interface
- user interface
- user-friendly interface
- video interface
- virtual interface
- vision interface
- visual/iconic interface
- wimp interfaceEnglish-Russian dictionary of computer science and programming > interface
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13 Mind
It becomes, therefore, no inconsiderable part of science... to know the different operations of the mind, to separate them from each other, to class them under their proper heads, and to correct all that seeming disorder in which they lie involved when made the object of reflection and inquiry.... It cannot be doubted that the mind is endowed with several powers and faculties, that these powers are distinct from one another, and that what is really distinct to the immediate perception may be distinguished by reflection and, consequently, that there is a truth and falsehood which lie not beyond the compass of human understanding. (Hume, 1955, p. 22)Let us then suppose the mind to be, as we say, white Paper, void of all Characters, without any Ideas: How comes it to be furnished? Whence comes it by that vast store, which the busy and boundless Fancy of Man has painted on it, with an almost endless variety? Whence has it all the materials of Reason and Knowledge? To this I answer, in one word, from Experience. (Locke, quoted in Herrnstein & Boring, 1965, p. 584)The kind of logic in mythical thought is as rigorous as that of modern science, and... the difference lies, not in the quality of the intellectual process, but in the nature of things to which it is applied.... Man has always been thinking equally well; the improvement lies, not in an alleged progress of man's mind, but in the discovery of new areas to which it may apply its unchanged and unchanging powers. (Leґvi-Strauss, 1963, p. 230)MIND. A mysterious form of matter secreted by the brain. Its chief activity consists in the endeavor to ascertain its own nature, the futility of the attempt being due to the fact that it has nothing but itself to know itself with. (Bierce, quoted in Minsky, 1986, p. 55)[Philosophy] understands the foundations of knowledge and it finds these foundations in a study of man-as-knower, of the "mental processes" or the "activity of representation" which make knowledge possible. To know is to represent accurately what is outside the mind, so to understand the possibility and nature of knowledge is to understand the way in which the mind is able to construct such representation.... We owe the notion of a "theory of knowledge" based on an understanding of "mental processes" to the seventeenth century, and especially to Locke. We owe the notion of "the mind" as a separate entity in which "processes" occur to the same period, and especially to Descartes. We owe the notion of philosophy as a tribunal of pure reason, upholding or denying the claims of the rest of culture, to the eighteenth century and especially to Kant, but this Kantian notion presupposed general assent to Lockean notions of mental processes and Cartesian notions of mental substance. (Rorty, 1979, pp. 3-4)Under pressure from the computer, the question of mind in relation to machine is becoming a central cultural preoccupation. It is becoming for us what sex was to Victorians-threat, obsession, taboo, and fascination. (Turkle, 1984, p. 313)7) Understanding the Mind Remains as Resistant to Neurological as to Cognitive AnalysesRecent years have been exciting for researchers in the brain and cognitive sciences. Both fields have flourished, each spurred on by methodological and conceptual developments, and although understanding the mechanisms of mind is an objective shared by many workers in these areas, their theories and approaches to the problem are vastly different....Early experimental psychologists, such as Wundt and James, were as interested in and knowledgeable about the anatomy and physiology of the nervous system as about the young science of the mind. However, the experimental study of mental processes was short-lived, being eclipsed by the rise of behaviorism early in this century. It was not until the late 1950s that the signs of a new mentalism first appeared in scattered writings of linguists, philosophers, computer enthusiasts, and psychologists.In this new incarnation, the science of mind had a specific mission: to challenge and replace behaviorism. In the meantime, brain science had in many ways become allied with a behaviorist approach.... While behaviorism sought to reduce the mind to statements about bodily action, brain science seeks to explain the mind in terms of physiochemical events occurring in the nervous system. These approaches contrast with contemporary cognitive science, which tries to understand the mind as it is, without any reduction, a view sometimes described as functionalism.The cognitive revolution is now in place. Cognition is the subject of contemporary psychology. This was achieved with little or no talk of neurons, action potentials, and neurotransmitters. Similarly, neuroscience has risen to an esteemed position among the biological sciences without much talk of cognitive processes. Do the fields need each other?... [Y]es because the problem of understanding the mind, unlike the wouldbe problem solvers, respects no disciplinary boundaries. It remains as resistant to neurological as to cognitive analyses. (LeDoux & Hirst, 1986, pp. 1-2)Since the Second World War scientists from different disciplines have turned to the study of the human mind. Computer scientists have tried to emulate its capacity for visual perception. Linguists have struggled with the puzzle of how children acquire language. Ethologists have sought the innate roots of social behaviour. Neurophysiologists have begun to relate the function of nerve cells to complex perceptual and motor processes. Neurologists and neuropsychologists have used the pattern of competence and incompetence of their brain-damaged patients to elucidate the normal workings of the brain. Anthropologists have examined the conceptual structure of cultural practices to advance hypotheses about the basic principles of the mind. These days one meets engineers who work on speech perception, biologists who investigate the mental representation of spatial relations, and physicists who want to understand consciousness. And, of course, psychologists continue to study perception, memory, thought and action.... [W]orkers in many disciplines have converged on a number of central problems and explanatory ideas. They have realized that no single approach is likely to unravel the workings of the mind: it will not give up its secrets to psychology alone; nor is any other isolated discipline-artificial intelligence, linguistics, anthropology, neurophysiology, philosophy-going to have any greater success. (Johnson-Laird, 1988, p. 7)Historical dictionary of quotations in cognitive science > Mind
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14 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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15 Jeanneret, Charles-Edouard (Le Corbusier)
SUBJECT AREA: Architecture and building[br]b. 6 October 1887 La Chaux-de-Fonds, Switzerlandd. 27 August 1965 Cap Martin, France[br]Swiss/French architect.[br]The name of Le Corbusier is synonymous with the International style of modern architecture and city planning, one utilizing functionalist designs carried out in twentieth-century materials with modern methods of construction. Charles-Edouard Jeanneret, born in the watch-making town of La Chaux-de-Fonds in the Jura mountain region, was the son of a watch engraver and dial painter. In the years before 1918 he travelled widely, studying building in many countries. He learned about the use of reinforced concrete in the studio of Auguste Perret and about industrial construction under Peter Behrens. In 1917 he went to live in Paris and spent the rest of his life in France; in 1920 he adopted the name of Le Corbusier, one derived from that of his ancestors (Le Corbesier), and ten years later became a French citizen.Le Corbusier's long working life spanned a career divided into three distinct parts. Between 1905 and 1916 he designed a number of simple and increasingly modern houses; the years 1921 to 1940 were ones of research and debate; and the twenty years from 1945 saw the blossoming of his genius. After 1917 Le Corbusier gained a reputation in Paris as an architect of advanced originality. He was particularly interested in low-cost housing and in improving accommodation for the poor. In 1923 he published Vers une architecture, in which he planned estates of mass-produced houses where all extraneous and unnecessary features were stripped away and the houses had flat roofs and plain walls: his concept of "a machine for living in". These white boxes were lifted up on stilts, his pilotis, and double-height living space was provided internally, enclosed by large areas of factory glazing. In 1922 Le Corbusier exhibited a city plan, La Ville contemporaine, in which tall blocks made from steel and concrete were set amongst large areas of parkland, replacing the older concept of city slums with the light and air of modern living. In 1925 he published Urbanisme, further developing his socialist ideals. These constituted a major reform of the industrial-city pattern, but the ideas were not taken up at that time. The Depression years of the 1930s severely curtailed architectural activity in France. Le Corbusier designed houses for the wealthy there, but most of his work prior to 1945 was overseas: his Centrosoyus Administration Building in Moscow (1929–36) and the Ministry of Education Building in Rio de Janeiro (1943) are examples. Immediately after the end of the Second World War Le Corbusier won international fame for his Unité d'habitation theme, the first example of which was built in the boulevard Michelet in Marseille in 1947–52. His answer to the problem of accommodating large numbers of people in a small space at low cost was to construct an immense all-purpose block of pre-cast concrete slabs carried on a row of massive central supports. The Marseille Unité contains 350 apartments in eight double storeys, with a storey for shops half-way up and communal facilities on the roof. In 1950 he published Le Modular, which described a system of measurement based upon the human male figure. From this was derived a relationship of human and mathematical proportions; this concept, together with the extensive use of various forms of concrete, was fundamental to Le Corbusier's later work. In the world-famous and highly personal Pilgrimage Church of Notre Dame du Haut at Ronchamp (1950–5), Le Corbusier's work was in Expressionist form, a plastic design in massive rough-cast concrete, its interior brilliantly designed and lit. His other equally famous, though less popular, ecclesiastical commission showed a contrasting theme, of "brutalist" concrete construction with uncompromisingly stark, rectangular forms. This is the Dominican Convent of Sainte Marie de la Tourette at Eveux-sur-l'Arbresle near Lyon, begun in 1956. The interior, in particular, is carefully worked out, and the lighting, from both natural and artificial sources, is indirect, angled in many directions to illuminate vistas and planes. All surfaces are carefully sloped, the angles meticulously calculated to give optimum visual effect. The crypt, below the raised choir, is painted in bright colours and lit from ceiling oculi.One of Le Corbusier's late works, the Convent is a tour de force.[br]Principal Honours and DistinctionsHonorary Doctorate Zurich University 1933. Honorary Member RIBA 1937. Chevalier de la Légion d'honneur 1937. American Institute of Architects Gold Medal 1961. Honorary Degree University of Geneva 1964.BibliographyHis chief publications, all of which have been numerously reprinted and translated, are: 1923, Vers une architecture.1935, La Ville radieuse.1946, Propos d'urbanisme.1950, Le Modular.Further ReadingP.Blake, 1963, Le Corbusier: Architecture and Form, Penguin. R.Furneaux-Jordan, 1972, Le Corbusier, Dent.W.Boesiger, 1970, Le Corbusier, 8 vols, Thames and Hudson.——1987, Le Corbusier: Architect of the Century, Arts Council of Great Britain.DYBiographical history of technology > Jeanneret, Charles-Edouard (Le Corbusier)
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16 device
1) прибор; устройство; установка2) компонент; элемент4) фигура речи5) девиз; лозунг•- λ-device- λ-shaped negative-resistance device
- absolute pointing device
- absolute value device
- accumulation-mode charge-coupled device
- acoustic correlation device
- acoustic delay device
- acoustic imaging device
- acoustic-surface-wave device
- acoustic-surface-wave interaction charge-coupled device
- acoustic-volume-wave device
- acoustic-wave device
- acoustooptic device
- acoustoresistive device
- active device
- active medium propagation device
- adaptive device
- add-on device
- all-junction device
- aluminum-gate MOS device
- amorphous semiconductor memory device
- amorphous semiconductor switching device
- analog device
- answer device
- antihunt device
- anti-inrush device
- antijamming device
- anti-pumping device
- antisidetone device
- antistatic device
- antistrike device
- AO device
- arc-control device
- array device
- attached device
- attention device
- audible signal device
- audio device
- audio-response device
- augmentative device
- autocorrelation device
- automatic holding device
- automatic-alarm-signal keying device
- avalanche device
- avalanche-effect device
- backup device
- band-compression device
- beam-expanding device
- beam-lead device
- beam-manipulating device
- beam-narrowing device
- beam-transforming device
- bidirectional device
- bipolar device
- bistable device
- bistable optical device
- block device
- BlueTooth device
- bogey electron device
- bubble device
- bubble domain device
- bubble lattice storage device
- bubble memory device
- bucket-brigade charge-coupled device
- bucket-brigade device
- built-in pointing device
- bulk channel charge-coupled device
- bulk-acoustic-wave device
- bulk-charge-coupled device
- bulk-effect device
- bulk-property device
- bulk-type acoustooptic device
- bunching device
- buried channel charge-coupled device
- burst device
- bus-powered device
- callback port protection device
- calling device
- carrier-operated antinoise device
- cascade charge-coupled device
- cascaded thermoelectric device
- center-bonded device
- CFAR device
- character device
- charge-control device
- charge-coupled device
- charge-coupled imaging device
- charge-coupled line imaging device
- charge-coupled storage device
- charge-injection device
- charge-injection imaging device
- charge-transfer device
- charge-trapping device
- chip device
- chip-and-wire device
- clip-on pointing device
- clustered devices
- CMOS device
- coder device
- coherent electroluminescence device
- color imaging device
- COM device
- complex programmable logic device
- compound device
- computer output microfilm device
- conductively connected charge-coupled device
- constant false-alarm ratio device
- consumer device
- contiguous-disk bubble domain device
- controlled avalanche device
- controlled-surface device
- correlation device
- countermeasure devices
- coupling device
- cross-correlation device
- cross-field device
- cryogenic device
- current-access magnetic bubble device
- current-controlled device
- current-controlled differential-negative-resistance device
- current-controlled DNR device
- current-mode logic device
- current-operated device
- custom device
- data entry device
- data preparation device
- data recording device
- deception devices
- decision-making device
- decoding device
- dedicated device
- deformable-mirror device
- DEFT device
- delay device
- dense device
- depletion-mode device
- detecting device
- DI device
- dielectric isolation device
- diffused device
- digit delay device
- digital device
- digital micromirror device
- diode-array imaging device
- direct electronic Fourier transform device
- direct-access storage device
- direct-view device
- direct-viewing device
- discrete device
- disk device
- display device
- distributed diode device
- distributed interaction device
- division device
- D-MOS device
- domain propagation device
- domain-tip device
- double-negative-resistance-device
- double-quantum stimulated-emission device
- dynamically configurable device
- eavesdropping device
- E-beam fabricated device
- EBS device
- edge-bonded device
- EL device
- elastooptic device
- electrically programmable logic device
- electroluminescence device
- electromagnetic device
- electron device
- electron-beam semiconductor device
- electronic device
- electronic imaging device
- electron-optical device
- electrooptical device
- elementary MOS device
- embedded device
- encoding device
- end device
- energy conversion device
- enhancement-mode device
- epiplanar device
- epitaxial-device
- error-sensing device
- exchange-coupled thin-film memory device
- external control device
- false-echo devices
- Faraday-rotation device
- fast-discharge device
- ferrite device
- ferroelectric device
- FET device
- fiber-laser device
- field-access memory device
- field-effect device
- field-effect transistor device
- field-emission device
- field-programmable interconnect device
- file device
- file-protection device
- fixed tap-weight bucket-brigade device
- floating-gate device
- fluidic-device
- follow-up device
- four-layer device
- four-terminal device
- Frame Relay access device
- free-electron device
- freestanding pointing device
- FS device
- full-speed device
- functional device
- galvanomagnetic device
- galvanomagnetic semiconductor device
- gate-array device
- graphic input device
- graphic output device
- gripping device
- groove locating device
- guided-wave acoustooptic device
- guided-wave AO Bragg device
- Gunn device
- Gunn-effect device
- gyromagnetic device
- Hall device
- Hall-effect device
- harbor echo ranging and listening device
- head-cleaning device
- heteroepitaxial device
- heterojunction device
- high-technology device
- high-threshold device
- homing device
- hot-electron device
- human interface device
- hybrid ferromagnet-semiconductor device
- hybrid integrated-circuit device
- hybrid-type device
- I/O device
- identification device
- image-storage device
- imaging device
- implanted device
- incidental radiation device
- industrial data collection device
- infrared charge-coupled device
- input device
- input-output device
- insulated-gate device
- integrated electron device
- integrated injection device
- integrated optic device
- integrating device
- interface device
- interlocking device
- ion-implantation device
- ion-implanted bubble device
- ion-injection electrostatic plasma confinement device
- jelly-bean device
- Josephson device
- Josephson-effect device
- junction device
- junction-gate device
- keying device
- known-good device
- large-area p-n junction device
- laser annealing device
- laser device
- laser welding device
- laser-beam machining device
- leaded device
- leadless device
- left ventricular assist device
- light-detecting device
- light-emitting device
- linear beam device
- linear imaging device
- locked dynamically configurable device
- logic device
- long-channel device
- low-speed device
- low-threshold device
- LS device
- magnetic bubble device
- magnetic detecting device
- magnetic device
- magnetic flux quantum device
- magnetic tunnel junction memory device
- magnetic-wave device
- magnetoelastic-wave device
- magnetoelectronic device
- magnetooptic bubble-domain device
- magnetostatic-wave device
- magnetostrictive device
- magnetotunneling device
- majority-carrier device
- make-and-break device
- manipulating device
- marginal device
- maser device
- matching device
- measurement device
- mechanical switching device
- memory device
- MEMS device
- MEMS-based device
- metal-gate device
- metal-insulator-metal device
- metal-insulator-piezoelectric semiconductor device
- metal-oxide-silicon device
- metal-semiconductor device
- microcomputer device
- microdiscrete device
- microelectromechanical system device
- microelectromechanical system-based device
- microelectronic device
- microfluidic device
- MIDI device
- minority-carrier device
- MIPS device
- MIS device
- MNOS device
- molecule-sized device
- MOS color imaging device
- MOS device
- MOS memory device
- MSW device
- M-type device
- multiaperture device
- multijunction device
- multilayered memory device
- multilevel storage device
- multiple-tap bucket-brigade device
- multiple-unit semiconductor device
- multiport device
- multistable device
- multiterminal device
- n-channel device
- negation device
- negative-resistance device
- night viewing device
- n-n heterojunction device
- noise-rejection device
- nonburst device
- noninverting parametric device
- nonreciprocal field-displacement device
- n-p-n device
- n-terminal device
- one-port device
- open-collector device
- optically coupled device
- optically pumped device
- optoelectronic device
- O-type device
- output device
- overlay device
- oxide-passivated device
- P&P device
- parallel device
- parametric device
- passivated device
- passive device
- pattern recognition device
- p-channel device
- p-channel MOS device
- periodic permanent magnet focusing device
- persistent current device
- persistent-image device
- personal communication device
- photoconducting device
- photoelectric device
- photoemissive device
- photosensitive device
- photovoltaic device
- picking device
- piezoelectric device
- piezomagnetic device
- planar device
- planar-doped barrier device
- plasma device
- plasma-coupled semiconductor device
- plotting device
- plug-and-play device
- plug-in device
- PMOS device
- p-n junction device
- PnP device
- p-n-p device
- p-n-p-n device
- point-contact superconducting device
- pointing device
- polysilicon charge-coupled device
- port protection device
- p-p heterojunction device
- PPM focusing device
- programmable device
- programmable logic device
- protective device
- punch-through device
- pyroelectric thermal imaging device
- quantum-dot resonant tunneling device
- quasioptical device
- quenched domain mode device
- radiation-measuring device
- random-access device
- rapid single flux quantum device
- readout device
- reciprocal device
- recognition device
- rectifying device
- regulating device
- relative pointing device
- restricted radiation device
- reverberation device
- ringing device
- robot control device
- rotating-field bubble device
- rotating-field bubble domain device
- RSFQ device
- safety device
- SAW device
- Schottky barrier semiconductor device
- Schottky device
- Schottky-barrier-gate Gunn-effect digital device
- SCSI device
- security device
- self-powered device
- self-reacting device
- self-synchronous device
- semiconductor device
- semiconductor switching device
- semiconductor-magnetic device
- sensing device
- serial device
- shallow-base device
- short-channel device
- short-circuit-stable device
- silicon imaging device
- silicon-gate MOS memory device
- silicon-on-insulating substrate device
- single-junction device
- single-tap bucket-brigade device
- single-unit semiconductor device
- slot device
- snap-on pointing device
- solid-state device
- SOS device
- sound-absorbing device
- spark-quenching device
- speech recognition device
- spin-wave device
- square-law device
- starting device
- static discharge device
- storage device
- storage display device
- storage-charge device
- stream device
- stream-oriented device
- stroke input device
- superconducting device
- superconducting quantum device
- superconducting quantum interference device
- surface acoustic-wave device
- surface charge-transfer device
- surface mount device
- surface-controlled device
- switching device
- symbolic device
- tape device
- tape-moving device
- TE device
- tensoelectric device
- terminal device
- thermoelectric cooling device
- thermoelectric device
- thermoelectric heating device
- thick-film device
- thin-film device
- Tokamak device
- transferred-electron device
- transferred-electron microwave device
- transit-time device
- traveling magnetic domain memory device
- traveling-wave Gunn effect device
- trip-free mechanical switching device
- tse device
- tube device
- tunnel device
- tunnel emission device
- twisted nematic device
- two-junction bipolar device
- two-port device
- two-terminal device
- ULA device
- uncommitted logic array device
- unidirectional device
- unilateral device
- unpacked device
- vacuum tunnel device
- variable grating mode device
- variable inductance cryogenic device
- vertical junction device
- VGM device
- V-groove MOS device
- virtual device
- visual signal device
- VMOS device
- V-MOS device
- voice-operated device
- voice-operated gain-adjusting device
- voltage-controlled device
- voltage-controlled differential-negative-resistance device
- voltage-controlled DNR device
- voltage-operated device
- wafer printing device
- wireless device
- X-ray detecting device
- YIG deviceThe New English-Russian Dictionary of Radio-electronics > device
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17 report
донесение, сообщение; доклад; рапорт; арт. звук выстрела; доносить; докладывать; рапортовать; представлять(ся) ( начальнику), pl. представление донесений ( пункт боевого приказа)meaconing, interference, jamming, intrusion report — донесение о применении комплексных помех типа «Миджи» (помехи РИС, пассивные и активные помехи, помехи средствам радиосвязи)
— bombing report— casualty situation report— exemption report— hotline report— letter efficiency report— logistics status report— minefield lifting report— nuclear attack report— performance evaluation report— weapons status report -
18 delay
запаздывание; задержка; отставаниеacceleration time delayaerodynamic delaycomputational delaycontrol loop delaycontrol system time delayeffective delayequivalent delayfeel system delayflight path delayflight path angle delayholding delayhuman delaylateral delaymode change delayobservation delayopen-loop delaypath stretching delaypilot delaypilot model time delaypilot's observation time delaypressure wave delaypure delayschedule delaytime delaytransport delayvisual delay -
19 actuator
- рукоятка, приводящая в действие некоторый механизм
- приводное устройство
- привод контактного аппарата
- привод
- орган управления
- механизм конечного выключателя, воздействующий на контакты
- исполнительный орган
- исполнительный механизм
- защелка (для фиксации сочленения розетки и плоского печатного проводника)
- воздействующее устройство
воздействующее устройство
источник сигнала
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
Синонимы
EN
исполнительный механизм
Устройство для управления арматурой, предназначенное для перемещения регулирующего элемента в соответствии с командной информацией, поступающей от внешнего источника энергии.
[ ГОСТ Р 52720-2007]
исполнительный механизм
Механизм, являющийся функциональным блоком, предназначенным для управления исполнительным органом в соответствии с командной информацией.
Примечание. В системах автоматического регулирования сред исполнительный механизм предназначен для перемещения затвора регулирующего органа
[ ГОСТ 14691-69]
исполнительный механизм
Силовой механизм, используемый для движения машины и ее частей.
[ ГОСТ Р МЭК 60204-1-2007]EN
(electric) actuator
device that produces a specified movement when excited by an electric signal
SOURCE: 351-18-46 MOD
[IEV ref 151-13-49]
actuator
In electrical engineering, the term actuator refers to a mechanism that causes a device to be turned on or off, adjusted or moved, usually in response to an electrical signal. In some literature the terms actor or effector are also used. The term “effector” is preferred by programmers, whereas engineers tend to favor “actuator.”
An example of an actuator is a motor that closes blinds in response to a signal from a sunlight detector.
Actuators enable computers to control complex manufacturing processes without human intervention or supervision.
[ABB. Glossary of technical terms. 2010]FR
actionneur (électrique), m
dispositif qui produit un mouvement spécifié en réponse à un signal électrique
SOURCE: 351-18-46 MOD
[IEV ref 151-13-49]Тематики
- арматура трубопроводная
- исполнительное устройство, механизм
- электробезопасность
EN
исполнительный орган
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва, 1999 г.]Тематики
- электротехника, основные понятия
EN
механизм конечного выключателя, воздействующий на контакты
—
[Я.Н.Лугинский, М.С.Фези-Жилинская, Ю.С.Кабиров. Англо-русский словарь по электротехнике и электроэнергетике, Москва]Тематики
- электротехника, основные понятия
EN
орган управления
Частьсистемыаппарата управления, к которой прилагается извне усилие управления.
МЭК 60050(441-15-22).
Примечание. Орган управления может иметь форму рукоятки, ручки, нажимной кнопки, ролика, плунжера и т. п.
[ ГОСТ Р 50030. 1-2000 ( МЭК 60947-1-99)]
орган управления
Часть приводного механизма, к которой прикладывается внешняя сила воздействия.
Примечание - Орган управления может иметь форму ручки, кнопки, ролика, поршня и т.д.
[ ГОСТ Р 52726-2007]
орган управления
Часть системы привода, подвергаемая внешнему силовому воздействию.
Примечания
1. Орган управления может иметь форму ручки, рукоятки, нажимной кнопки, ролика, плунжера и т.д.
2. Есть несколько способов приведения в действие, которые не требуют внешнего силового воздействия, а только какого-либо действия.
[ГОСТ ЕН 1070-2003]
орган управления
Часть системы управления, которая предназначена непосредственно для воздействия оператором, например путем нажатия.
[ГОСТ Р ЕН 614-1-2003]
орган управления
Часть системы приведения в действие, которая принимает воздействие человека.
[ ГОСТ Р МЭК 60447-2000]
орган управления
Часть системы приведения в действие, которая воспринимает воздействие человека (ГОСТ Р МЭК 60447).
Примечание
В настоящем стандарте орган управления в виде интерактивного экранного устройства отображения является частью этого устройства, которое представляет функцию органа управления.
[ ГОСТ Р МЭК 60073-2000]
орган управления
Часть механизма прибора управления, на который оказывается вручную внешнее силовое воздействие.
Примечание.
Орган управления может иметь форму ручки, рукоятки, кнопки, ролика, плунжера и т.д.
Некоторые органы управления не требуют воздействия внешней силы, а только какого-либо действия.
[ ГОСТ Р МЭК 60204-1-2007]
органы управления
Ручки, переключатели, потенциометры и другие органы, служащие для включения и регулировки аппаратуры. Термин относится преимущественно к аналоговым приборам.
[Система неразрушающего контроля. Виды (методы) и технология неразрушающего контроля. Термины и определения (справочное пособие). Москва 2003 г.]
орган управления
-
[IEV number 442-04-14]
средства оперирования
-
[Интент]EN
actuator
the part of the actuating system to which an external actuating force is applied
NOTE – The actuator may take the form of a handle, knob, push-button, roller, plunger, etc.
[IEV number 441-15-22]
actuator
part of a device to which an external manual action is to be applied
NOTE 1 The actuator may take the form of a handle, knob, push-button, roller, plunger, etc.
NOTE 2 There are some actuating means that do not require an external actuating force, but only an action.
NOTE 3 See also 3.34.
[IEC 60204-1 -2005]
actuating member
a part which is pulled, pushed, turned or otherwise moved to cause an operation of the switch
[IEV number 442-04-14]FR
organe de commande
partie du mécanisme transmetteur à laquelle un effort extérieur de manoeuvre est appliqué
NOTE – L'organe de commande peut prendre la forme d'une poignée, d'un bouton, d'un bouton-poussoir, d'une roulette, d'un plongeur, etc.
[IEV number 441-15-22]
organe de manoeuvre
partie qui est tirée, poussée, tournée ou manipulée de toute autre façon pour provoquer le fonctionnement de l'interrupteur
[IEV number 442-04-14]
Аппарат должен оставаться механически действующим. Не допускается сваривание контактов, препятствующее операции размыкания при использовании нормальных средств оперирования.
[ГОСТ Р 50030.3-99 (МЭК 60947-3-99) ]
ВДТ следует оперировать как при нормальной эксплуатации. Операции размыкания должны проводиться в следующем порядке:
для первых 1000 циклов — с использованием ручных средств оперирования;...
[ ГОСТ Р 51326. 1-99 ( МЭК 61008-1-96)]Параллельные тексты EN-RU
The operating means (for example, a handle) of the supply disconnecting device shall be easily accessible and located between 0,6 m and 1,9 m above the servicing level.
[IEC 60204-1-2006]Органы управления, например, рукоятки аппаратов отключения питания, должны быть легко доступны и располагаться на высоте от 0,6 до 1,9 м от рабочей площадки.
[Перевод Интент]Where the external operating means is not intended for emergency operations, it is recommended that it be coloured BLACK or GREY.
[IEC 60204-1-2006]Если внешние средства оперирования не предназначены для выполнения действий при возникновении аварийных ситуаций, то рекомендуется, применять такие средства ЧЕРНОГО или СЕРОГО цвета.
[Перевод Интент]1.2.2. Control devices
Control devices must be:
— clearly visible and identifiable and appropriately marked where necessary,
— positioned for safe operation without hesitation or loss of time, and without ambiguity,
— designed so that the movement of the control is consistent with its effect,
— located outside the danger zones, except for certain controls where necessary, such as emergency stop, console for training of robots,
— positioned so that their operation cannot cause additional risk,
— designed or protected so that the desired effect, where a risk is involved, cannot occur without an intentional operation,
— made so as to withstand foreseeable strain; particular attention must be paid to emergency stop devices liable to be subjected to considerable strain.1.2.2. Органы управления
Органы управления должны быть:
- четко видны, хорошо различимы и, где это необходимо, иметь соответствующее обозначение;
- расположены так, чтобы ими можно было пользоваться без возникновения сомнений и потерь времени на выяснение их назначения;
- сконструированы так, чтобы перемещение органа управления согласовывалось с их воздействием;
- расположены вне опасных зон; исключение, где это необходимо, делается для определенных средств управления, таких, как средство экстренной остановки, пульт управления роботом;
- расположены так, чтобы их использование не вызывало дополнительных рисков;
- сконструированы или защищены так, чтобы в случаях, где возможно возникновение рисков, они не могли бы возникнуть без выполнения намеренных действий;
- сделаны так, чтобы выдерживать предполагаемую нагрузку; при этом особое внимание уделяется органам аварийного останова, которые могут подвергаться значительным нагрузкам.Where a control is designed and constructed to perform several different actions, namely where there is no one-to-one correspondence (e.g. keyboards, etc.), the action to be performed must be clearly displayed and subject to confirmation where necessary.
Если орган управления предназначен для выполнения разных действий, например, если в качестве органа управления используется клавиатура или аналогичное устройство, то должна выводиться четкая информация о предстоящем действии, и, если необходимо, должно выполняться подтверждение на выполнение такого действия.
Controls must be so arranged that their layout, travel and resistance to operation are compatible with the action to be performed, taking account of ergonomic principles.
Органы управления должны быть организованы таким образом, чтобы их расположение, перемещение их элементов и усилие, которое оператор затрачивает на их перемещение, соответствовали выполняемым операциям и принципам эргономики.
Constraints due to the necessary or foreseeable use of personal protection equipment (such as footwear, gloves, etc.) must be taken into account.
Необходимо учитывать скованность движений операторов при использовании необходимых или предусмотренных средств индивидуальной защиты (таких, как специальная обувь, перчатки и др.).
Machinery must be fitted with indicators (dials, signals, etc.) as required for safe operation. The operator must be able to read them from the control position.
Для обеспечения безопасной эксплуатации машинное оборудование должно быть оснащено индикаторами (циферблатами, устройствами сигнализации и т. д.). Оператор должен иметь возможность считывать их с места управления.
From the main control position the operator must be able to ensure that there are no exposed persons in the danger zones.
Находясь в главном пункте управления, оператор должен иметь возможность контролировать отсутствие незащищенных лиц.
If this is impossible, the control system must be designed and constructed so that an acoustic and/ or visual warning signal is given whenever the machinery is about to start.
Если это невозможно, то система управления должна быть разработана и изготовлена так, чтобы перед каждым пуском машинного оборудования подавался звуковой и/или световой предупредительный сигнал.
The exposed person must have the time and the means to take rapid action to prevent the machinery starting up.
[DIRECTIVE 98/37/EC OF THE EUROPEAN PARLIAMENT AND OF THE COUNCIL]
Незащищенное лицо должно иметь достаточно времени и средств для быстрого предотвращения пуска машинного оборудования.
[Перевод Интент]
Тематики
- автоматизация, основные понятия
- аппарат, изделие, устройство...
- безопасность машин и труда в целом
- выключатель автоматический
- выключатель, переключатель
- высоковольтный аппарат, оборудование...
- электробезопасность
- электротехника, основные понятия
Синонимы
EN
- actuating member
- actuator
- command unit
- control
- control device
- controller
- controls
- operating control
- operating means
DE
FR
привод
Устройство для приведения в действие машин и механизмов.
Примечание
Привод состоит из источника энергии, механизма для передачи энергии (движения) и аппаратуры управления. Источником энергии служит двигатель (тепловой, электрический, пневматический, гидравлический и др.) или устройство, отдающее заранее накопленную механическую энергию (пружинный, инерционный, гиревой механизм и др.). В некоторых случаях привод осуществляется за счет мускульной силы. По характеру распределения энергии различают групповой, индивидуальный и многодвигательный привод. По назначению привод машин разделяют на стационарный, т.е. установленный неподвижно на раме или фундаменте; передвижной, используемый на движущихся рабочих машинах; транспортный, применяемый для различных транспортных средств. В производстве применяются также гидропривод машин и пневмопривод.
[РД 01.120.00-КТН-228-06]
привод
Устройство для приведения в действие машин, состоящее из двигателя, механизма передачи и системы управления
[Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]Тематики
- аппарат, изделие, устройство...
EN
DE
FR
привод контактного аппарата
Устройство, предназначенное для создания или передачи силы, воздействующей на подвижные части контактного аппарата для выполнения функции этого аппарата.
[ ГОСТ 17703-72]
привод
Устройство, предназначенное для создания и передачи силы, воздействующей на подвижные части выключателя для выполнения его функций, а также для удержания выключателя в конечном положении.
[ ГОСТ Р 52565-2006]Приводы являются аппаратами для включения и удержания во включенном положении, а также отключения коммутационных аппаратов (масляного выключателя, выключателя нагрузки или разъединителя).
С помощью приводов осуществляется ручное, автоматическое и дистанционное управление коммутационными аппаратами.
По роду используемой энергии приводы разделяются- на ручные,
- пружинные,
- электромагнитные,
- электродвигательные,
- пневматические.
По роду действия приводы бывают
- прямого действия
- косвенного действия.
В приводах прямого действия движение включающего устройства передается непосредственно на приводной механизм выключателя в момент подачи импульса от источника энергии. Такие приводы потребляют большое количество энергии.
В приводах косвенного действия энергия, необходимая для включения, предварительно запасается в специальных устройствах: маховиках, пружинах, грузах и т. д.
[Цигельман И. Е. Электроснабжение гражданских зданий и коммунальных предприятий: Учеб. для электромеханич. спец. техникумов. - М.: Высш. шк. 1988.]
Приводы служат для включения, удержания во включенном положении и отключения разъединителей и выключателей.
Основные требования, предъявляемые к приводу выключателя, состоят в том, что каждый привод должен развивать мощность, достаточную для включения выключателя при самых тяжелых условиях работы (включение на короткое замыкание, пониженное напряжение питания), и быть быстродействующим, т. е. производить включение за весьма малый промежуток времени. При медленном включении на существующее в сети КЗ возможно приваривание контактов.
При включении выключателя совершается большая работа по преодолению сопротивления отключающих пружин, сопротивления упругих частей контактов, трения в механизме, сопротивления масла движению подвижных частей выключателя, электродинамических сил, препятствующих включению, и др.
При отключении привод выключателя совершает небольшую работу, необходимую только для освобождения запорного механизма, так как отключение выключателя происходит под действием его отключающих пружин.
В зависимости от рода энергии, используемой для включения, приводы разделяются на ручные, грузовые, пружинно-грузовые, пружинные, электромагнитные, пневматические и гидравлические.
К наиболее простым относятся ручные приводы, не требующие специального источника электроэнергии для подготовки операции включения. Однако эти приводы имеют ряд существенных недостатков: не позволяют осуществлять дистанционное включение, не могут быть применены в схемах АВР (автоматического включения резерва) и АПВ (автоматического повторного включения), требуют приложения значительной мускульной силы оператора и не позволяют получить высокие скорости подвижных контактов выключателя, необходимые при больших токах КЗ.
Более совершенными, имеющими большие возможности, но в то же время и более сложными являются грузовые и пружинные приводы, которые обеспечивают значительно более высокие скорости включения выключателя по сравнению с ручными. Это в свою очередь позволяет увеличить включающую способность выключателя. Грузовые и пружинные приводы включают выключатель за счет заранее накопленной энергии поднятого груза или заведенной пружины. Накопление достаточного количества энергии может производиться в течение сравнительно большого промежутка времени (десятки секунд), поэтому мощность электродвигателей таких приводов может быть небольшой (0,1—0.3 кВт).
Электромагнитные приводы включают выключатель за счет энергии включающего электромагнита. Электромагнитные приводы предназначены для работы на постоянном токе. Питание их осуществляют от аккумуляторных батарей или выпрямителей. По способу питания энергией приводы подразделяют на две группы: прямого и косвенного действия.
У приводов прямого действия энергия, расходуемая на включение, сообщается приводу во время процесса включения. К приводам прямого действия относятся ручные с использованием мускульной силы человека и электромагнитные или соленоидные приводы. Работа приводов косвенного действия основана на предварительно запасаемой энергии. К таким приводам относятся грузовые, пружинно-грузовые и пружинные приводы, а также пневматические и гидравлические. Последние два типа приводов не нашли широкого применения для выключателей 6—10 кВ и поэтому нами не рассматриваются.
Приводы прямого действия по конструкции более просты по сравнению с приводами косвенного действия, и в этом их преимущество. Однако поскольку приводы прямого действия питаются от источника энергии непосредственно во время процесса включения выключателя, то потребляемая ими мощность во много раз больше, чем у приводов косвенного действия. Это — существенный недостаток приводов прямого действия.
Ко всем приводам выключателей предъявляют требование наличия механизма свободного расцепления, т. е. возможности освобождения выключателя от связи с удерживающим и заводящим механизмами привода при срабатывании отключающего устройства и отключения выключателя под действием своих отключающих пружин. Современные приводы имеют свободное расцепление почти на всем ходу контактов, т. е. практически в любой момент от начала включения может произойти отключение. Это особенно важно при включении на КЗ. В этом случае отключение произойдет в первый же момент возникновения дуги, что предотвратит опасность сильного оплавления и сваривания контактов.[http://forca.ru/stati/podstancii/privody-razediniteley-i-maslyanyh-vyklyuchateley-6-10-kv-i-ih-remont.html]
Тематики
- выключатель, переключатель
- высоковольтный аппарат, оборудование...
Классификация
>>>Синонимы
EN
Смотри также
рукоятка, приводящая в действие некоторый механизм
—
[ http://slovarionline.ru/anglo_russkiy_slovar_neftegazovoy_promyishlennosti/]Тематики
EN
3.3.15 орган управления (actuator): Часть системы управления, к которой прилагают извне усилие управления.
Примечание- Орган управления может иметь форму рукоятки, нажимной кнопки и т.д.
Источник: ГОСТ Р 51731-2010: Контакторы электромеханические бытового и аналогичного назначения оригинал документа
Англо-русский словарь нормативно-технической терминологии > actuator
20 simulation
моделирование; имитационное моделирование; имитация- analog-computer simulation
- analog-digital simulation
- behavioral simulation
- cell-level simulation
- circuit simulation
- computer simulation
- conceptual data simulation
- continuous simulation
- critical-path timing simulation
- data simulation
- date simulation
- deterministic simulation
- digital simulation
- digital-computer simulation
- dynamic simulation
- electronic simulation
- empirical simulation
- environmental simulation
- event-driven logic simulation
- functional simulation
- gaming simulation
- gate-level logic simulation
- geometrical simulation
- hardware simulation
- heuristic simulation
- high-level simulation
- human factor simulation
- input/output simulation
- interrupt simulation
- logic simulation
- machine simulation
- macroscopic freeway simulation
- mathematical simulation
- matrix simulation
- mixed-level simulation
- mixed-mode simulation
- Monte-Carlo simulation
- multilevel simulation
- multilevel-mode simulation
- multimode simulation
- network simulation
- numerical simulation
- operational simulation
- physical simulation
- real-time simulation
- smart simulation
- software simulation
- space simulation
- stochastic simulation
- subcircuit-level simulation
- system simulation
- tactic combat simulation
- time simulation
- traffic simulation
- transistor-level simulation
- virtual reality simulation
- visual interactive simulation
- voice simulationСтраницы- 1
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См. также в других словарях:
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