PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Automatic metrological diagnostics of sensors

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Automatyczna diagnostyka metrologiczna czujników
Języki publikacji
EN
Abstrakty
EN
As the number of sophisticated technical complexes with automatic control systems grows, the number of embedded sensors increases. The specific scientific problems that emerge while developing the sensors characterized by fault tolerance and long-term lifetime without metrological maintenance are considered. The possible ways of solution of these problems are outlined. The features of metrological diagnostics are demonstrated.
PL
W miarę wzrostu liczby skomplikowanych technicznych kompleksów z automatycznymi systemami sterowania zwiększa się liczba wbudowanych czujników. Rozpatrywane są problemy naukowo-techniczne związane z konstrukcją czujników charakteryzujących się długim czasem pracy bez obsługi metrologicznej i odpornością na uszkodzenia. Zostały zarysowane drogi rozwiązania tych problemów i możliwości diagnostyki metrologicznej.
Czasopismo
Rocznik
Tom
Strony
37--41
Opis fizyczny
Bibliogr. 29 poz.
Twórcy
autor
  • D. I. Mendeleyev Institute for Metrology (VNIIM) 19 Moskovsky pr., St. Petersburg, Russia, 190005, taymanov@vniim.ru
Bibliografia
  • [1] Tarbeyev Yu., Kuzin A., Taymanov R., Lukashev A.: New Stage of Development of Sensors Metrological Assurance, Measurement Technique, 3, 2007. p. 69-72.
  • [2] Taymanov R., Sapozhnikova K.: Problems of Developing a New Generation of Intelligent Sensors, Proc. of the 10th IMEKO TC7 Symposium, St. Petersburg, 2004, p. 442-447.
  • [3] Fridman A. E.: Theory of Metrological Reliability, Measurement Technique, 1991, 11, p. 3-10.
  • [4] Efremov L., Sapozhnikova R.: Assessment of the Sensors Lifetime on the Basis of Test Results, Proc. of the 10th IMEKO TC7 Symp., St. Petersburg, 2004, p. 448-453.
  • [5] Sapozhnikova K., Taymanov R.: Development of Sensors Distinguished by Enhanced Reliability, Proc. of Сonf. “Nuclear Power Instrumentation, Controls, and Human Machine Interface Technology“, Albuquerque, New Mexico, USA, 2006.
  • [6] Taymanov R., Moiseeva N.: Application of the Metrological Investigation to the Development of the Manufacturing Technology of High-reliable Sensors, Proc. of the 10th IMEKO TC7 Symp., St. Petersburg, 2004, p. 433 - 436.
  • [7] Hashemian H. M.: Maintenance of Process Instrumentation in Nuclear Power Plants, Springer - Verlag, Berlin Heidelberg, 2006.
  • [8] Reed R. P.: Possibilities and Limitations of Self-validation of Thermoelectric Thermometry, Proc. of the Conf. “Temperature: Its Measurement and Control in Science and Industry”, 7, D. C. Ripple et al. eds., AIP Conference Proceedings, Melville, New York, 2003, p. 507-512.
  • [9] Henry M. P., Clarke D. W.: The Self-validating Sensor. Rationale, Definitions, and Examples, Control Eng. Practice, v. 1, 1993, 4, p. 585-610.
  • [10] Taymanov R., Sapozhnikova K., Druzhinin I.: Measuring Control Rod Position, Nuclear Plant Journal, 2007, 2, USA, p. 45-47.
  • [11] Henry, M.P., Clarke, D. W., et al.: A Self-validating Digital Coriolis Mass-flow Meter: an Overview, Control Engineering Practice, 8, 2000, 5, p. 487-506.
  • [12] Yang J. C.-Y., Clarke D. W.: A Self-validating Thermocouple, IEEE Transactions on Control Systems Technology, v. 5, 1997, 2.
  • [13] Bernhard F., Boguhn D., et al.: Application of Self-calibrating Thermocouples with Miniature Fixed-point Cells in a Temperature Range from 500 oC to 650 oC in Steam Generators, Proc. of the XVII IMEKO World Congress, 2003, Dubrovnik, Croatia, p. 1604-1608.
  • [14] Feng Z.-G., Wang Q., Shida K.: Structure Design and Finite Element Analysis of Self-Validating Pressure Sensor, Chinese Journal of Sensors and Actuators, 20, 2007, 2, p. 279-282.
  • [15] Belevtczev A. B., Karzhavin A. V., et al.: In-built Method for Estimation of Confidence in Thermocouple Measurements, Mir Izmerenii, 2005, 3, p. 12-15.
  • [16] Hans V., Ricken O.: Self-monitoring and Self-Calibrating Gas Flow Meter, Proc. of 8th International Symposium on Measurement Technology and Intelligent Instruments, Sept 24-27, 2007, p. 285-288.
  • [17] Barberree D.: Dynamically Self-validating Contact Temperature Sensors, Proc. of the Conf. “Temperature: Its Measurement and Control in Science and Industry”, 7, D. C. Ripple et al. eds, AIP Conference Proceedings, Melville, New York, 2003, p.1097-1102.
  • [18] WO2007097688, Redundant Level Measurement in Radar Level Gauging System, G01F23/284; G01F23/14; G01F25/00, Haegg L., Larsson L.O., et al, Rosemount Tank Radar AB, 2007.08.30.
  • [19] Kao I., Zhang K.: Miniaturized Sensors for Intelligent System Fault Detection and Diagnosis (FDD), Proceedings of SPIE, 2007, part 1, art. No. 65290U.
  • [20] Frolik J., Abdelrahman M.: A confidence –based Approach to the Self-validation, Fusion and Reconstruction of Quasi-redundant Sensor Data, IEEE Transactions on Instrument and Measurement, v. 50, 2001, 6, p. 1761-1769.
  • [21] MI Recommendation 2021-89, Metrological Assurance of Flexible Manufacturing Systems. Fundamentals, Committee on Standard. and Metrology, Moscow, 1991.
  • [22] BS 7986:2001, Data Quality Specification for Industrial Measuring and Control Systems, British Standards Institute, London, 2001.
  • [23] MI Recommendation 2233-00. Assurance of Measurement Efficiency in the Control of Technological Processes. Fundamentals, VNIIMS, Moscow, 2000.
  • [24] BS 7986:2005. Specification for Data Quality Metrics of Industrial Measurement and Control Systems, British Standards Institute, London, 2005.
  • [25] NAMUR Recommendation NE 107, Self-monitoring and Diagnosis of Field Devices, 2005.
  • [26] Sapozhnikova K. V.: Metrological diagnostic check, Metrological Service in the USSR, 1991, 2, p.18-24.
  • [27] Werthschutzky R., Muller R.: Sensor Self-Monitoring and Fault-Tolerance, Technisches Messen, v. 74, 2007, 4, p. 176-184.
  • [28] Feng Z., Wang Q., Shida K.: A review of self-validating sensor technology, Sensor Review, 27, 2007, 1, p. 48-56.
  • [29] Sapozhnikova K., Henry M., Taymanov R.: Proc. of the Joint IMEKO TC1+ TC7 Symp., Ilmenau, Germany, 2005, p. 71-72.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAR0-0038-0039
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.