DocumentCode :
2278824
Title :
A distributed fault tolerant architecture for nuclear reactor control and safety functions
Author :
Hecht, Myron ; Agron, Jeffrey ; Hochhauser, Sara
Author_Institution :
SoHaR Inc., Los Angeles, CA, USA
fYear :
1989
fDate :
5-7 Dec 1989
Firstpage :
214
Lastpage :
221
Abstract :
A fault-tolerant architecture that provides tolerance to a broad scope of hardware, software, and communications faults is being developed. This architecture relies on widely available commercial operating systems, local area networks, and software standards. Thus development time is significantly shortened, and modularity allows for continuous and inexpensive system enhancement throughout the expected 20-year life. The fault-containment and parallel-processing capabilities of computers are exploited to provide a high-performance, high-availability network capable of tolerating a broad scope of hardware, software, and operating system faults. The system can tolerate all but one known (and avoidable) single fault, two known and avoidable dual faults, and it will detect all higher-order fault sequences and provide diagnostics to allow for rapid manual recovery
Keywords :
distributed processing; fault tolerant computing; fission reactor safety; nuclear engineering computing; diagnostics; distributed fault tolerant architecture; fault-containment; modularity; nuclear reactor control and safety functions; parallel-processing; system enhancement; Computer architecture; Computer networks; Concurrent computing; Fault detection; Fault tolerance; Hardware; Local area networks; Operating systems; Software standards; Software systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real Time Systems Symposium, 1989., Proceedings.
Conference_Location :
Santa Monica, CA
Print_ISBN :
0-8186-2004-8
Type :
conf
DOI :
10.1109/REAL.1989.63572
Filename :
63572
Link To Document :
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