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he uses very technical language

  • 1 Technical

    adjective
    1) technisch [Problem, Detail, Daten, Fortschritt]; (of particular science, art, etc.) fachlich; Fach[kenntnis, -sprache, -begriff, -wörterbuch]; (of the execution of a work of art) technisch [Fertigkeit, Schwierigkeit]

    technical expertise/expert — Sachkenntnis, die/Fachmann, der

    technical college/school — Fachhochschule, die/Fachschule, die

    explain something without being or getting too technical — etwas erklären, ohne sich zu fachsprachlich auszudrücken

    technical term — Fachbegriff, der; Fachausdruck, der; Fachterminus, der

    for technical reasonsaus technischen Gründen

    2) (Law) formaljuristisch
    3)

    technical knockout (Boxing) technischer K.o

    * * *
    ['teknikəl]
    1) (having, or relating to, a particular science or skill, especially of a mechanical or industrial kind: a technical college; technical skill; technical drawing.) technisch
    2) ((having many terms) relating to a particular art or science: `Myopia' is a technical term for `short-sightedness'.) Fach-...
    3) (according to strict laws or rules: a technical defeat.) (rein)formel
    - academic.ru/73731/technicality">technicality
    - technically
    - technician
    * * *
    tech·ni·cal
    [ˈteknɪkəl]
    1. (concerning applied science) technisch
    2. (detailed) Fach-
    some parts of the book were too \technical to follow einige Teile des Buches waren fachlich zu anspruchsvoll, als dass man hätte folgen können
    \technical aspects fachliche Aspekte
    \technical term Fachausdruck m
    3. (in technique) technisch
    \technical skill technisches Können
    4. STOCKEX technisch
    \technical analysis Fachanalyse f, technische Analyse
    \technical correction technische Kurskorrektur
    \technical decline technischer Rückgang
    * * *
    ['teknIkəl]
    adj
    1) (= concerning technology and technique) technisch

    technical hitch — technische Schwierigkeit, technisches Problem

    2) (of particular branch) fachlich, Fach-; problems, vocabulary fachspezifisch; details formal

    technical termFachausdruck m, Terminus technicus m (geh)

    for technical reasons (Jur)aus verfahrenstechnischen Gründen

    the book is a bit too technical for mein dem Buch sind mir zu viele Fachausdrücke

    he uses very technical languageer benutzt sehr viele Fachausdrücke

    a 2L 54, if you want to be technical —

    that's true, if you want to be technical — das stimmt schon, wenn mans genau nimmt

    * * *
    ASTMS abk Br Association of Scientific, Technical, and Managerial Staffs
    * * *
    adjective
    1) technisch [Problem, Detail, Daten, Fortschritt]; (of particular science, art, etc.) fachlich; Fach[kenntnis, -sprache, -begriff, -wörterbuch]; (of the execution of a work of art) technisch [Fertigkeit, Schwierigkeit]

    technical expertise/expert — Sachkenntnis, die/Fachmann, der

    technical college/school — Fachhochschule, die/Fachschule, die

    explain something without being or getting too technical — etwas erklären, ohne sich zu fachsprachlich auszudrücken

    technical term — Fachbegriff, der; Fachausdruck, der; Fachterminus, der

    2) (Law) formaljuristisch
    3)

    technical knockout (Boxing) technischer K.o

    * * *
    adj.
    fachlich adj.
    technisch adj.

    English-german dictionary > Technical

  • 2 technical

    adjective
    1) technisch [Problem, Detail, Daten, Fortschritt]; (of particular science, art, etc.) fachlich; Fach[kenntnis, -sprache, -begriff, -wörterbuch]; (of the execution of a work of art) technisch [Fertigkeit, Schwierigkeit]

    technical expertise/expert — Sachkenntnis, die/Fachmann, der

    technical college/school — Fachhochschule, die/Fachschule, die

    explain something without being or getting too technical — etwas erklären, ohne sich zu fachsprachlich auszudrücken

    technical term — Fachbegriff, der; Fachausdruck, der; Fachterminus, der

    for technical reasonsaus technischen Gründen

    2) (Law) formaljuristisch
    3)

    technical knockout (Boxing) technischer K.o

    * * *
    ['teknikəl]
    1) (having, or relating to, a particular science or skill, especially of a mechanical or industrial kind: a technical college; technical skill; technical drawing.) technisch
    2) ((having many terms) relating to a particular art or science: `Myopia' is a technical term for `short-sightedness'.) Fach-...
    3) (according to strict laws or rules: a technical defeat.) (rein)formel
    - academic.ru/73731/technicality">technicality
    - technically
    - technician
    * * *
    tech·ni·cal
    [ˈteknɪkəl]
    1. (concerning applied science) technisch
    2. (detailed) Fach-
    some parts of the book were too \technical to follow einige Teile des Buches waren fachlich zu anspruchsvoll, als dass man hätte folgen können
    \technical aspects fachliche Aspekte
    \technical term Fachausdruck m
    3. (in technique) technisch
    \technical skill technisches Können
    4. STOCKEX technisch
    \technical analysis Fachanalyse f, technische Analyse
    \technical correction technische Kurskorrektur
    \technical decline technischer Rückgang
    * * *
    ['teknIkəl]
    adj
    1) (= concerning technology and technique) technisch

    technical hitch — technische Schwierigkeit, technisches Problem

    2) (of particular branch) fachlich, Fach-; problems, vocabulary fachspezifisch; details formal

    technical termFachausdruck m, Terminus technicus m (geh)

    for technical reasons (Jur)aus verfahrenstechnischen Gründen

    the book is a bit too technical for mein dem Buch sind mir zu viele Fachausdrücke

    he uses very technical languageer benutzt sehr viele Fachausdrücke

    a 2L 54, if you want to be technical —

    that's true, if you want to be technical — das stimmt schon, wenn mans genau nimmt

    * * *
    technical [ˈteknıkl] adj (adv technically)
    1. allg technisch:
    b) engS. betriebs-, verfahrenstechnisch (Daten etc):
    technical department technische Betriebsabteilung;
    technical director technische(r) Leiter(in)
    c) das Technische eines Fachgebiets, eines Kunstzweigs, einer Sportart betreffend:
    technical merit (Eis-, Rollkunstlauf) technischer Wert;
    technical skill technisches Geschick, gute Technik
    technical college bes Br Fachhochschule f;
    technical drawing SCHULE technisches Zeichnen
    e) fachmännisch, fachgemäß, Fach…, Spezial…:
    technical dictionary Fachwörterbuch n;
    technical man Fachmann m;
    technical staff (auch als pl konstruiert) technisches Personal, Fachpersonal n;
    technical term Terminus m technicus, Fachausdruck m
    2. fig technisch:
    a) sachlich
    b) rein formal, theoretisch:
    technical foul (Basketball) technisches Foul;
    technical knockout (Boxen) technischer K.o.;
    on technical grounds JUR aus formaljuristischen oder (verfahrens)technischen Gründen
    3. WIRTSCH manipuliert (Markt, Preise)
    tech. abk
    1. technical techn.
    * * *
    adjective
    1) technisch [Problem, Detail, Daten, Fortschritt]; (of particular science, art, etc.) fachlich; Fach[kenntnis, -sprache, -begriff, -wörterbuch]; (of the execution of a work of art) technisch [Fertigkeit, Schwierigkeit]

    technical expertise/expert — Sachkenntnis, die/Fachmann, der

    technical college/school — Fachhochschule, die/Fachschule, die

    explain something without being or getting too technical — etwas erklären, ohne sich zu fachsprachlich auszudrücken

    technical term — Fachbegriff, der; Fachausdruck, der; Fachterminus, der

    2) (Law) formaljuristisch
    3)

    technical knockout (Boxing) technischer K.o

    * * *
    adj.
    fachlich adj.
    technisch adj.

    English-german dictionary > technical

  • 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 Brinell, Johann August

    SUBJECT AREA: Metallurgy
    [br]
    b. 1849 Småland, Sweden
    d. 17 November 1925 Stockholm, Sweden
    [br]
    Swedish metallurgist, inventor of the well-known method of hardness measurement which uses a steel-ball indenter.
    [br]
    Brinell graduated as an engineer from Boräs Technical School, and his interest in metallurgy began to develop in 1875 when he became an engineer at the ironworks of Lesjöfors and came under the influence of Gustaf Ekman. In 1882 he was appointed Chief Engineer at the Fagersta Ironworks, where he became one of Sweden's leading experts in the manufacture and heat treatment of tool steels.
    His reputation in this field was established in 1885 when he published a paper on the structural changes which occurred in steels when they were heated and cooled, and he was among the first to recognize and define the critical points of steel and their importance in heat treatment. Some of these preliminary findings were first exhibited at Stockholm in 1897. His exhibit at the World Exhibition at Paris in 1900 was far more detailed and there he displayed for the first time his method of hardness determination using a steel-ball indenter. For these contributions he was awarded the French Grand Prix and also the Polhem Prize of the Swedish Technical Society.
    He was later concerned with evaluating and developing the iron-ore deposits of north Sweden and was one of the pioneers of the electric blast-furnace. In 1903 he became Chief Engineer of the Jernkontoret and remained there until 1914. In this capacity and as Editor of the Jernkontorets Annaler he made significant contributions to Swedish metallurgy. His pioneer work on abrasion resistance, undertaken long before the term tribology had been invented, gained him the Rinman Medal, awarded by the Jernkontoret in 1920.
    [br]
    Principal Honours and Distinctions
    Member of the Swedish Academy of Science 1902. Dr Honoris Causa, University of Upsala 1907. French Grand Prix, Paris World Exhibition 1900; Swedish Technical Society Polhem Prize 1900; Iron and Steel Institute Bessemer Medal 1907; Jernkontorets Rinman Medal 1920.
    Further Reading
    Axel Wahlberg, 1901, Journal of the Iron and Steel Institute 59:243 (the first English-language description of the Brinell Hardness Test).
    Machinery's Encyclopedia, 1917, Vol. III, New York: Industrial Press, pp. 527–40 (a very readable account of the Brinell test in relation to the other hardness tests available at the beginning of the twentieth century).
    Hardness Test Research Committee, 1916, Bibliography on hardness testing, Proceedings of the Institution of Mechanical Engineers.
    ASD

    Biographical history of technology > Brinell, Johann August

  • 5 switchboard

    1. распределительный щит
    2. распределительное устройство
    3. НКУ распределения и управления
    4. коммутационный щит
    5. коммутаторная панель
    6. коммутатор

     

    коммутатор
    Устройство, обеспечивающее посредством включения, отключения и переключения электрических цепей выбор требуемой выходной цепи и соединение с ней входной цепи
    [Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]

    Тематики

    • аппарат, изделие, устройство...

    EN

    DE

    FR

     

    коммутаторная панель
    распределительный щит

    Устройство, конструктивно объединяющее несколько коммутационных элементов, предназначенных для включения, отключения и переключения электрических цепей и каналов связи в ручном режиме.
    [Л.М. Невдяев. Телекоммуникационные технологии. Англо-русский толковый словарь-справочник. Под редакцией Ю.М. Горностаева. Москва, 2002]

    Тематики

    • электросвязь, основные понятия

    Синонимы

    EN

     

    коммутационный щит

    [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

     

    низковольтное устройство распределения и управления (НКУ)
    Низковольтные коммутационные аппараты и устройства управления, измерения, сигнализации, защиты, регулирования, собранные совместно, со всеми внутренними электрическими и механическими соединениями и конструктивными элементами.
    [ ГОСТ Р МЭК 61439-1-2012]

    низковольтное устройство распределения и управления

    Комбинация низковольтных коммутационных аппаратов с устройствами управления, измерения, сигнализации, защиты, регулирования и т. п., полностью смонтированных изготовителем НКУ (под его ответственность на единой конструктивной основе) со всеми внутренними электрическими и механическими соединениями с соответствующими конструктивными элементами
    Примечания
    1. В настоящем стандарте сокращение НКУ используют для обозначения низковольтных комплектных устройств распределения и управления.
    2. Аппараты, входящие в состав НКУ, могут быть электромеханическими или электронными.
    3. По различным причинам, например по условиям транспортирования или изготовления, некоторые операции сборки могут быть выполнены на месте установки, вне предприятия-изготовителя.
    [ ГОСТ Р 51321. 1-2000 ( МЭК 60439-1-92)]

    EN

    power switchgear and controlgear assembly (PSC-assembly)
    low-voltage switchgear and controlgear assembly used to distribute and control energy for all types of loads, intended for industrial, commercial and similar applications where operation by ordinary persons is not intended
    [IEC 61439-2, ed. 1.0 (2009-01)]

    low-voltage switchgear and controlgear assembly
    combination of one or more low-voltage switching devices together with associated control, measuring, signalling, protective, regulation equipment, etc., completely assembled under the responsibility of the manufacturer with all the internal electrical and mechanical interconnections and structural parts.
    [IEC 61892-3, ed. 2.0 (2007-11)]

    switchgear and controlgear
    a general term covering switching devices and their combination with associated control, measuring, protective and regulating equipment, also assemblies of such devices and equipment with associated interconnections, accessories, enclosures and supporting structures
    [IEV number 441-11-01]

    switchgear and controlgear

    electric equipment intended to be connected to an electric circuit for the purpose of carrying out one or more of the following functions: protection, control, isolation, switching
    NOTE – The French and English terms can be considered as equivalent in most cases. However, the French term has a broader meaning than the English term and includes for example connecting devices, plugs and socket-outlets, etc. In English, these latter devices are known as accessories.
    [IEV number 826-16-03 ]

    switchboard
    A large single electric control panel, frame, or assembly of panels on which are mounted (either on the back or on the face, or both) switches, overcurrent and other protective devices, buses, and usually instruments; not intended for installation in a cabinet but may be completely enclosed in metal; usually is accessible from both the front and rear.
    [ McGraw-Hill Dictionary of Architecture & Construction]

    switchboard
    One or more panels accommodating control switches, indicators, and other apparatus for operating electric circuits
    [ The American Heritage Dictionary of the English Language]

    FR

    ensemble d'appareillage de puissance (ensemble PSC)
    ensemble d'appareillage à basse tension utilisé pour répartir et commander l'énergie pour tous les types de charges et prévu pour des applications industrielles, commerciales et analogues dans lesquelles l'exploitation par des personnes ordinaires n'est pas prévue
    [IEC 61439-2, ed. 1.0 (2009-01)]

    appareillage, m
    matériel électrique destiné à être relié à un circuit électrique en vue d'assurer une ou plusieurs des fonctions suivantes: protection, commande, sectionnement, connexion
    NOTE – Les termes français et anglais peuvent être considérés comme équivalents dans la plupart des cas. Toutefois, le terme français couvre un domaine plus étendu que le terme anglais, et comprend notamment les dispositifs de connexion, les prises de courant, etc. En anglais, ces derniers sont dénommés "accessories".
    [IEV number 826-16-03 ]

    appareillage
    terme général applicable aux appareils de connexion et à leur combinaison avec des appareils de commande, de mesure, de protection et de réglage qui leur sont associés, ainsi qu'aux ensembles de tels appareils avec les connexions, les accessoires, les enveloppes et les charpentes correspondantes
    [IEV number 441-11-01]


    A switchboard as defined in the National Electrical Code is a large single panel, frame, or assembly of panels on which are mounted, on the face or back or both switches, overcurrent and other protective devices, buses, and, usually, instruments.
    Switchboards are generally accessible from the rear as well as from the front and are not intended to be installed in cabinets.
    The types of switchboards, classified by basic features of construction, are as follows:
    1. Live-front vertical panels
    2. Dead-front boards
    3. Safety enclosed boards( metal-clad)


    [American electricians’ handbook]

    Параллельные тексты EN-RU

    The switchboard plays an essential role in the availability of electric power, while meeting the needs of personal and property safety.

    Its definition, design and installation are based on precise rules; there is no place for improvisation.

    The IEC 61439 standard aims to better define " low-voltage switchgear and controlgear assemblies", ensuring that the specified performances are reached.

    It specifies in particular:

    > the responsibilities of each player, distinguishing those of the original equipment manufacturer - the organization that performed the original design and associated verification of an assembly in accordance with the standard, and of the assembly manufacturer - the organization taking responsibility for the finished assembly;

    > the design and verification rules, constituting a benchmark for product certification.

    All the component parts of the electrical switchboard are concerned by the IEC 61439 standard.


    Equipment produced in accordance with the requirements of this switchboard standard ensures the safety and reliability of the installation.

    A switchboard must comply with the requirements of standard IEC 61439-1 and 2 to guarantee the safety and reliability of the installation.

    Managers of installations, fully aware of the professional and legal liabilities weighing on their company and on themselves, demand a high level of safety for the electrical installation.

    What is more, the serious economic consequences of prolonged halts in production mean that the electrical switchboard must provide excellent continuity of service, whatever the operating conditions.

    [Schneider Electric]

    НКУ играет главную роль в обеспечении электроэнергией, удовлетворяя при этом всем требованиям по безопасности людей и сохранности имущества.

    Выбор конструкции, проектирование и монтаж основаны на чётких правилах, не допускающих никакой импровизации.

    Требования к низковольтным комплектным устройствам распределения и управления сформулированы в стандарте МЭК 61439 (ГОСТ Р 51321. 1-2000).

    В частности, он определяет:

    > распределение ответственности между изготовителем НКУ - организацией, разработавшей конструкцию НКУ и проверившей его на соответствие требованиям стандарта, и сборщиком – организацией, выполнившей сборку НКУ;

    > конструкцию, технические характеристики, виды и методы испытаний НКУ.

    В стандарте МЭК 61439 (ГОСТ Р 51321. 1-2000) описываются все компоненты НКУ.

    Оборудование, изготовленное в соответствии с требованиями этого стандарта, обеспечивает безопасность и надежность электроустановки.

    Для того чтобы гарантировать безопасность эксплуатации и надежность работы электроустановки, распределительный щит должен соответствовать требованиям стандарта МЭК 61439-1 и 2.

    Лица, ответственные за электроустановки, должны быть полностью осведомлены о профессиональной и юридической ответственности, возложенной на их компанию и на них лично, за обеспечение высокого уровня безопасности эксплуатации этих электроустановок.

    Кроме того, поскольку длительные перерывы производства приводят к серьезным экономическим последствиям, электрический распределительный щит должен обеспечивать надежную и бесперебойную работу независимо от условий эксплуатации.

    [Перевод Интент]

     

    LV switchgear assemblies are undoubtedly the components of the electric installation more subject to the direct intervention of personnel (operations, maintenance, etc.) and for this reason users demand from them higher and higher safety requirements.

    The compliance of an assembly with the state of the art and therefore, presumptively, with the relevant technical Standard, cannot be based only on the fact that the components which constitute it comply with the state of the art and therefore, at least presumptively, with the relevant technical standards.

    In other words, the whole assembly must be designed, built and tested in compliance with the state of the art.

    Since the assemblies under consideration are low voltage equipment, their rated voltage shall not exceed 1000 Va.c. or 1500 Vd.c. As regards currents, neither upper nor lower limits are provided in the application field of this Standard.

    The Standard IEC 60439-1 states the construction, safety and maintenance requirements for low voltage switchgear and controlgear assemblies, without dealing with the functional aspects which remain a competence of the designer of the plant for which the assembly is intended.

    [ABB]

    Низковольтные комплектные устройства (НКУ), вне всякого сомнения, являются частями электроустановок, которые наиболее подвержены непосредственному вмешательству оперативного, обслуживающего и т. п. персонала. Вот почему требования потребителей к безопасности НКУ становятся все выше и выше.

    Соответствие НКУ современному положению дел и вследствие этого, гипотетически, соответствующим техническим стандартам, не может основываться только на том факте, что составляющие НКУ компоненты соответствуют современному состоянию дел и поэтому, по крайней мере, гипотетически, - соответствующим техническим стандартам

    Другими словами, НКУ должно быть разработано, изготовлено и испытано в соответствии с современными требованиями.

    Мы рассматриваем низковольтные комплектные устройства и это означает, что их номинальное напряжение не превышает 1000 В переменного тока или 1500 В постоянного тока. Что касается тока, то ни верхнее, ни нижнее значение стандартами, относящимися к данной области, не оговариваются

    Стандарт МЭК 60439-1 устанавливает требования к конструкции, безопасности и техническому обслуживанию низковольтных комплектных устройств без учета их функций, полагая, что функции НКУ являются компетенцией проектировщиков электроустановки, частью которых эти НКУ являются.

    [Перевод Интент]

    Тематики

    • НКУ (шкафы, пульты,...)

    Классификация

    >>>

    Действия

    Синонимы

    Сопутствующие термины

    EN

    DE

    • Schaltanlagen und/oder Schaltgeräte

    FR

     

    распределительное устройство
    Распределительным устройством (РУ) называется электроустановка, служащая для приема и распределения электроэнергии и содержащая сборные и соединительные шины, коммутационные аппараты, вспомогательные устройства (компрессорные, аккумуляторные и др.), а также устройства защиты, автоматики и измерительные приборы.
    [РД 34.20.185-94]

    распределительное устройство

    Электроустановка, предназначенная для приема и распределения электрической энергии на одном напряжении и содержащая коммутационные аппараты и соединяющие их сборные шины [секции шин], устройства управления и защиты.
    Примечание. К устройствам управления относятся аппараты и связывающие их элементы обеспечивающие контроль, измерение, сигнализацию и выполнение команд.
    [ ГОСТ 24291-90]
    [ ГОСТ Р 53685-2009]

    электрическое распределительное устройство
    распределительное устройство
    Устройство, предназначенное для приема и распределения электроэнергии на одном напряжении и содержащее коммутационные аппараты и соединяющие их сборные соединительные устройства.
    Примечание. В состав распределительного устройства дополнительно могут входить устройства защиты и управления
    [ОСТ 45.55-99]

    распределительное устройство
    Электроустановка, служащая для приема и распределения электроэнергии и содержащая коммутационные аппараты, сборные и соединительные шины, вспомогательные устройства (компрессорные, аккумуляторные и др.), а также устройства защиты, автоматики и измерительные приборы.
    [ПОТ Р М-016-2001]
    [РД 153-34.0-03.150-00]

    устройство распределительное
    Совокупность аппаратов и приборов для приёма и распределения электроэнергии одного напряжения, вырабатываемой электростанцией или преобразуемой подстанцией
    [Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]

    EN

    switching substation
    a substation which includes switchgear and usually busbars, but no power transformers
    [IEV number 605-01-02]

    FR

    poste de sectionnement
    poste de coupure

    poste comprenant des organes de manoeuvre et généralement des jeux de barres, à l'exclusion de transformateurs de puissance
    [IEV number 605-01-02]

    В качестве РУ 6—10 кВ используется сборка высокого напряжения с однополюсными разъединителями и вертикальным расположением фаз одного присоединения и одна камера КСО с выключателем нагрузки и предохранителями для подключения трансформатора. Для РУ 0,4 кВ применяются сборки низкого напряжения с предохранителями и вертикальным расположением фаз одного присоединения.
    На ПС применяются открытые (ОРУ), закрытые (ЗРУ) или комплектные (КРУ) распределительные устройства.

    [ http://energy-ua.com/elektricheskie-p/klassifikatsiya.html]


    КЛАССИФИКАЦИЯ

    В общем случае ПС и РУ являются составной частью электроустановок, которые различаются:

    • по назначению:
      • генерирующие,
      • преобразовательно-распределительные,
      • потребительские.

        Генерирующие электроустановки служат для выработки электроэнергии, преобразовательно-распределительные электроустановки преобразуют электроэнергию в удобный для передачи и потребления вид, передают ее и распределяют между потребителями;

     Шкала номинальных напряжений ограничена сравнительно небольшим числом стандартных значений, благодаря чему изготавливается небольшое число типоразмеров машин и оборудования, а электросети выполняются более экономичными. В установках трехфазного тока номинальным напряжением принято считать напряжение между фазами (междуфазовое напряжение). Согласно ГОСТ 29322—92 установлена следующая шкала номинальных напряжений:

    для электросетей переменного тока частотой 50 Гц междуфазовое напряжение должно быть: 12, 24, 36, 42, 127, 220, 380 В; 3, 6, 10, 20, 35, 110, 150, 220, 330, 500, 750 и 1150 кВ;
    для электросетей постоянного тока: 12, 24, 36, 48, 60, 110, 220, 440, 660, 825, 3000 В и выше.

    Тупиковые ПС получают питание по одной или двум тупиковым ВЛ.

    Ответвительные ПС присоединяются ответвлением к одной или двум проходящим ВЛ с односторонним или двухсторонним питанием.

    Проходные ПС включаются в рассечку одной или двух проходящих ВЛ с односторонним или двухсторонним питанием.

    Узловые ПС кроме питающих имеют отходящие радиальные или транзитные ВЛ.

    • по способу управления ПС могут быть:
      • только с телесигнализацией,
      • телеуправляемыми с телесигнализацией,
      • с телесигнализацией и управлением с общеподстанционного пункта управления (ОПУ).


    Подстанции оперативно обслуживаются постоянным дежурным персоналом на щите управления, дежурными на дому или оперативно-выездными бригадами (ОВБ). Ремонт ПС осуществляется специализированными выездными бригадами централизованного ремонта или местным персоналом подстанции.

    В РУ напряжением до 1000 В провода, шины, аппараты, приборы и конструкции выбирают как по нормальным условиям работы (напряжению и току), так и по термическим и динамическим воздействиям токов коротких замыканий (КЗ) или предельно допустимой отключаемой мощности.

    В РУ и ПС напряжением выше 1000 В расстояния между электрооборудованием, аппаратами, токоведущими частями, изоляторами, ограждениями и конструкциями устанавливаются так, чтобы при нормальном режиме работы электроустановки возникающие физические явления (температура нагрева, электрическая дуга, выброс газов, искрение и др.) не могли привести к повреждению оборудования и КЗ.

    [ http://energy-ua.com/elektricheskie-p/klassifikatsiya.html]
     



    Several different classifications of switchgear can be made:

    A single line-up may incorporate several different types of devices, for example, air-insulated bus, vacuum circuit breakers, and manually operated switches may all exist in the same row of cubicles.

    Ratings, design, specifications and details of switchgear are set by a multitude of standards. In North America mostly IEEE and ANSI standards are used, much of the rest of the world uses IEC standards, sometimes with local national derivatives or variations.

    [Robert W. Smeaton (ed) Switchgear and Control Handbook 3rd Ed., Mc Graw Hill, new York 1997]
    [ http://en.wikipedia.org/wiki/High_voltage_switchgear]

    Тематики

    Синонимы

    EN

    DE

    FR

     

    распределительный щит
    Комплектное устройство, содержащее различную коммутационную аппаратуру, соединенное с одной или более отходящими электрическими цепями, питающееся от одной или более входящих цепей, вместе с зажимами для присоединения нейтральных и защитных проводников.
    [ ГОСТ Р МЭК 60050-826-2009]

    щит распределительный
    Электротехническое устройство, объединяющее коммутационную, регулирующую и защитную аппаратуру, а также контрольно-измерительные и сигнальные приборы
    [Терминологический словарь по строительству на 12 языках (ВНИИИС Госстроя СССР)]

    распределительный щит

    [А.С.Гольдберг. Англо-русский энергетический словарь. 2006 г.]

    EN

    distribution board
    assembly containing different types of switchgear and controlgear associated with one or more outgoing electric circuits fed from one or more incoming electric circuits, together with terminals for the neutral and protective conductors.
    [IEV number 826-16-08]

    FR

    tableau de répartition, m
    ensemble comportant différents types d'appareillage associés à un ou plusieurs circuits électriques de départ alimentés par un ou plusieurs circuits électriques d'arrivée, ainsi que des bornes pour les conducteurs neutre et de protection.
    [IEV number 826-16-08]

    Параллельные тексты EN-RU

    Distribution switchboards, including the Main LV Switchboard (MLVS), are critical to the dependability of an electrical installation. They must comply with well-defined standards governing the design and construction of LV switchgear assemblies

    A distribution switchboard is the point at which an incoming-power supply divides into separate circuits, each of which is controlled and protected by the fuses or switchgear of the switchboard. A distribution switchboard is divided into a number of functional units, each comprising all the electrical and mechanical elements that contribute to the fulfilment of a given function. It represents a key link in the dependability chain.

    Consequently, the type of distribution switchboard must be perfectly adapted to its application. Its design and construction must comply with applicable standards and working practises.

    [Schneider Electric]

    Распределительные щиты, включая главный распределительный щит низкого напряжения (ГРЩ), играют решающую роль в обеспечении надежности электроустановки. Они должны отвечать требованиям соответствующих стандартов, определяющих конструкцию и порядок изготовления НКУ распределения электроэнергии.

    В распределительном щите выполняется прием электроэнергии и ее распределение по отдельным цепям, каждая из которых контролируется и защищается плавкими предохранителями или автоматическими выключателями.
    Распределительный щит состоит из функциональных блоков, включающих в себя все электрические и механические элементы, необходимые для выполнения требуемой функции. Распределительный щит представляет собой ключевое звено в цепи обеспечения надежности.

    Тип распределительного щита должен соответствовать области применения. Конструкция и изготовление распределительного щита должны удовлетворять требованиям применимых стандартов и учитывать накопленную практику применения.

    [Перевод Интент]

     

    5654

    Рис. Schneider Electric

    With Prisma Plus G you can be sure to build 100% Schneider Electric switchboards that are safe, optimised:

    > All components (switchgear, distribution blocks, prefabricated connections, etc.) are perfectly rated and coordinated to work together;

    > All switchboard configurations, even the most demanding ones, have been tested.

    You can prove that your switchboard meets the current standards, at any time.

    You can be sure to build a reliable electrical installation and give your customers full satisfaction in terms of dependability and safety for people and the installation.

    Prisma Plus G with its discreet design, blends harmoniously into all tertiary and industrial buildings, including in entrance halls and passageways.

    With Prisma Plus G you can build just the right switchboard for your customer, sized precisely to fit costs and needs.

    With this complete, prefabricated and tested system, it's easy to upgrade your installation and still maintain the performance levels.

    > The wall-mounted and floor-standing enclosures combine easily with switchboards already in service.

    > Devices can be replaced or added at any time.

    [Schneider Electric]

    С помощью оболочек Prisma Plus G можно создавать безопасные распределительные щиты, на 100 % состоящие из изделий Schneider Electric:

    > все изделия (коммутационная аппаратура, распределительные блоки, готовые заводские соединения и т. д.) полностью совместимы механически и электрически;

    > все варианты компоновки распределительных щитов, в том числе для наиболее ответственных применений, прошли испытания.

    В любое время вы можете доказать, что ваши распределительные щиты полностью соответствуют требованиям действующих стандартов.

    Вы можете быть полностью уверены в том, что создаете надежные электроустановки, удовлетворяющие всем требованиям безопасности для людей и оборудования

    Благодаря строгому дизайну, распределительные щиты Prisma Plus G гармонично сочетаются с интерьером любого общественного или промышленного здания. Они хорошо смотрятся и в вестибюле, и в коридоре.

    Применяя оболочки Prisma Plus G можно создавать распределительные щиты, точно соответствующие требованиям заказчика как с точки зрения технических характеристик, так и стоимости.

    С помощью данной испытанной системы, содержащей все необходимые компоненты заводского изготовления можно легко модернизировать существующую электроустановку и поддерживать её уровни производительности.

    > Навесные и напольные оболочки можно легко присоединить к уже эксплуатируемым распределительным щитам.

    > Аппаратуру можно заменять или добавлять в любое время.

    [Перевод Интент]

     

    The switchboard, central to the electrical installation.

    Both the point of arrival of energy and a device for distribution to the site applications, the LV switchboard is the intelligence of the system, central to the electrical installation.

    [Schneider Electric]

    Распределительный щит – «сердце» электроустановки.

    Низковольтное комплектное устройство распределения является «сердцем» электроустановки, поскольку именно оно принимает электроэнергию из сети и распределяет её по территориально распределенным нагрузкам.

    [Перевод Интент]

    Тематики

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    Англо-русский словарь нормативно-технической терминологии > switchboard

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