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Upadhyaya, B.R.; Holbert, K.E.; Kerlin, T.W.
Tennessee Univ., Knoxville, TN (USA). Dept. of Nuclear Engineering1989
Tennessee Univ., Knoxville, TN (USA). Dept. of Nuclear Engineering1989
AbstractAbstract
[en] The objective of the university-industry joint research program at the University of Tennessee and Combustion Engineering, Inc. is to develop and implement a comprehensive signal validation system for current power plants and future advanced reactors. The integrated system consists of several parallel signal processing modules. The multi-modular decision information is combined to detect, isolate and characterize faulty signals. The signal validation system has been implemented in a VAX workstation and applied to operational data from a pressurized water reactor (PWR) and the Experimental Breeder Reactor-II (EBR-II). The use of the various signal validation techniques may be extended to predictive maintenance advising, instrument calibration verification, and to the development of intelligent instrumentation systems. 18 refs., 6 figs
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1989; 19 p; 7. power plant dynamics, control and testing symposium; Knoxville, TN (USA); 15-17 May 1989; CONF-890555--10; Available from NTIS, PC A03/MF A01 - OSTI; 1 as DE89010052; Portions of this document are illegible in microfiche products.
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BREEDER REACTORS, ENRICHED URANIUM REACTORS, EPITHERMAL REACTORS, EXPERIMENTAL REACTORS, FAST REACTORS, FBR TYPE REACTORS, LIQUID METAL COOLED REACTORS, NUCLEAR FACILITIES, POWER PLANTS, POWER REACTORS, REACTORS, RESEARCH AND TEST REACTORS, RESEARCH PROGRAMS, SODIUM COOLED REACTORS, THERMAL POWER PLANTS, THERMAL REACTORS, WATER COOLED REACTORS, WATER MODERATED REACTORS
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