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Monday, May 11, 2020 | History

2 edition of Man-machine interface issues in nuclear power plants found in the catalog.

Man-machine interface issues in nuclear power plants

J. DeBor

Man-machine interface issues in nuclear power plants

report on a workshop held on January 10-12, 1989

by J. DeBor

  • 37 Want to read
  • 23 Currently reading

Published by Division of Systems Research, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission in Washington, DC .
Written in English

    Subjects:
  • Expert systems (Computer science) -- Validation.,
  • Nuclear power plants -- Design and construction.

  • Edition Notes

    Other titlesMan machine interface issues in nuclear power plants.
    Statementprepared by J. Debor, R. Swezey.
    ContributionsSwezey, Robert W., U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research., Science Applications International Corporation.
    The Physical Object
    Paginationvi, 28, 9, 6 p. ;
    Number of Pages28
    ID Numbers
    Open LibraryOL15385370M

    tends to be an interface that simply cannot be employed to complete the required tasks or the actual users are unwilling accept the technology. Johnson [Johnson ] points out numerous issues with Graphical User Interfaces. While Johnson’s book concentrates on GUIs, many of the issues that are raised also apply to HRI development. Westinghouse has been awarded over $m to provide components, instrumentation and control equipment, plus Man-Machine Interface Systems for two new nuclear power plants to be built in. South Korea. Westinghouse will also supply technical and engineering support services. The Westinghouse contracts are with DOOSAN Heavy Industries and Construction Company, and the Korea Power .

    A Human Machine Interface (HMI) is exactly what the name implies; a graphical interface that allows humans and machines to interact. Human machine interfaces vary widely, from control panels for nuclear power plants, to the screen on an iPhone. However, for this discussion we are referring to an HMI control panel for manufacturing-type processes. Man-machine interface issues in nuclear power plants [microform]: report on a workshop held on January Ocular attention-sensing interface system [microform] / Allen Zaklad [et al.] Knowledge-based systems: implications for human-computer interfaces / D.M. Cleal and N.O. Heaton; Interface: Schools Computing Centre newsletter.

    2. OBJECTIVES FOR THE DEVELOPMENT OF ADVANCED NUCLEAR PLANTS Worldwide, at least 20 different advanced nuclear plant designs are being developed. All of these advanced nuclear plant designs reference the key words enhanced safety, improved reliability and better economics in stating the overall objectives for their development. Some of the advanced. The Halden Man-Machine Laboratory (HAMMLAB) has been at the heart of human factors research at the OECD Halden Reactor Project (HRP). The HRP is sponsored by a group of organizations representing nuclear power plant regulators, utilities, research institutions and vendors.


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Man-machine interface issues in nuclear power plants by J. DeBor Download PDF EPUB FB2

Get this from a library. Man-machine interface issues in nuclear power plants: report on a workshop held on January[J DeBor; Robert W Swezey; U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Systems Research.

Michio Miyasaka, in Radioactivity in the Environment, Right to Participation in Building a Nuclear Power Plant (Spatial Justice) With regard to nuclear power plants and their nuclear waste, ethicists discuss intergenerational ethics (Shrader-Frechette,).They question the justifiability of making future generations bear the risks associated with managing radioactive.

Nuclear Plant Instrumentation, Control, and Human-Machine Interface Technologies (NPIC&HMIT ) San Francisco, CA, JuneItem ID: Nuclear News 3-Map COMBO #1 of United States and Both Worldwide Commercial Nuclear Power Plants Wall Maps. Underway on Nuclear Power. The Man Behind the Words: Eugene P.

"Dennis. Main features of the on-line disturbance analysis system SAAP-2 are reported about. It is being developed for application in nuclear power plants. Problems related to man-machine-communication will be gone into more details, because their solution will influence end-user acceptance considerably.

Events have changed the global prospects for nuclear power by N.L. Char and B.J. Csik To trace the history of nuclear power development, one can look back to four decades of effort in a changing world. Much has been done, much has been achieved, and many lessons have been learned.

More than nuclear power plants are currently in operation in. INSAG-7 The Chernobyl Accident: Updating of INSAG-1 A REPORT BY THE on general issues of the operational safety of nuclear power plants in the then Union importance of the man-machine interface.

Specific issues relating to the design of the RBMK reactors were the subject. @article{osti_, title = {Proceedings of the international meeting on thermal nuclear reactor safety. Vol. 1}, author = {}, abstractNote = {Separate abstracts are included for each of the papers presented concerning current issues in nuclear power plant safety; national programs in nuclear power plant safety; radiological source terms; probabilistic risk assessment methods and techniques.

Task 3: new man±machine interfaces in nuclear power plants, NEA/CSNI/R (93) Swain A.D., Guttmann, H.E. Handbook of Human Reliability Analysis with Emphasis on Nuclear Power Plant.

@article{osti_, title = {Human factor engineering based design and modernization of control rooms with new I and C systems}, author = {Larraz, J. and Rejas, L. and Ortega, F.}, abstractNote = {Instrumentation and Control (I and C) systems of the latest nuclear power plants are based on the use of digital technology, distributed control systems and the integration of information in data.

Chapter 10 (Man-Machine Interface Systems) Software in nuclear power plants can be used to execute relatively simple combinational logic, such as that used for reactor trip functions, or more elaborate sequential logic, such as that used for actuating engineered safety features or for process control and monitoring.

Washington, DC: The. Safety Issues for Advanced Protection, Control and Human – Machine Interface Systems in Operating Nu-clear Power Plants. IAEA Safety Report Series, SRS-6, IAEA, Vienna, Austria. Digital Instrumentation and Control Systems in Nuclear Power Plants: researchers have used nuclear power plant human factors research to further a better understanding of human performance issues in both nuclear power plants and other safety-critical industries.

Other safety-critical U.S. industries, such as space, aviation, and defense. [2] U.S. Nuclear Regulatory Commission: Man-Machine Interface Issues in Nuclear Power Plants; NUREG/CR, SAIC/; [3] U.S. Nuclear. ANI Basic Fire Protection for Nuclear Power Plants ANS American Nuclear Society MMI Man-Machine Interface MOFB Mis-oriented Fuel Bundle MOV Motor-Operated Valve ABWR Design Control Document/Introduction.

ABWR. Purpose of the DCD. Table 8 Fuel System: Design Criteria and. chapter from his classic book, Usability Engineering (Nielsen, ), highlights the mul- can’t remember the proper code to use when an alarm goes off in a nuclear power plant, a man-machine interface (MMI), human-machine interface (HMI), operator.

The main purpose of the book is to provide written background material to the participants and to support lecturers of the training courses on Regulatory Control of Nuclear Power Plants.

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In: Yoshikawa H., Zhang Z. (eds) Progress of Nuclear Safety for Symbiosis and by: Providing Decision Support in Westinghouse Nuclear Power Plant Man-Machine Interface Systems.

Proceedings of the Human Factors Society Annual Meeting, Vol. 35, Issue. 10, p. Proceedings of the Human Factors Society Annual Meeting, Vol. 35, Issue. 10, p. Get this from a library. Man-machine interface in the nuclear industry: proceedings of an International Conference on Man-Machine Interface in the Nuclear Industry (Control and Instrumentation, Robotics, and Artificial Intelligence) organized by the International Atomic Energy Agency in co-operation with the Commission of the European Communities and the Nuclear Energy Agency of the OECD and.

However, recent advances in man-machine interface system (M-MIS) technology (i.e., sensors, processors, displays and controls, and the overall control room configuration) and the man-machine systems that they control have created the need for more sophisticated approaches to by: 4.An Advanced Man-Machine System for BWR Nuclear Power Plants p.

A Human Factors View of New Technology in Nuclear Power Plant Control Rooms p. Development of an Expert System for Performance Evaluation and Diagnosis in Nuclear Power Plants p. Towards Defining the Functional Role for CANDU Annunciation p.

The second part, “Intelligent Engineering Applications”, reports on engineering problems such as man-machine interface, risk analysis, image processing, robotics, knowledge-based engineering, expert systems, process control integration, diagnosis, measurements and interpretation by intelligent techniques and soft computing used for general.