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- W2912509486 abstract "Fault tolerance is an important consideration in the definition, design, and development of large scale scientific computer systems. Until recently, the consideration of fault tolerance has been relegated to systems inaccessible to human maintenance or to those systems for which failures are prohibitively expensive. The attitudes of computer manufacturers toward fault tolerance seem to be that in open, human-maintained systems it is cheaper for the users to resubmit jobs when failures are detected than it is for the manufacturers to design fault tolerance into the system. If system operations can be considered to be a resource, then this resource can be conserved by incorporating fault tolerance, and, at least, detection of faults, into the system. If decisions are to be made in critical areas such as medicine, aircraft design, or nuclear reactor engineering, then the inclusion of fault tolerance into large, high speed systems would justify critical decisions.This dissertation presents results of research upon the extent of fault tolerance included in vector processing systems. The particular systems looked at are the Control Data Corporation STAR 100, the Texas Instruments Advanced Scientific Computer, and the Cray Research, Inc. CRAY-1. The systems were compared in terms of fault tolerance properties included in each system. A basis for the comparison is included in the dissertation consisting of a review of fault tolerance and a development of the theory of vector processing. Efficiency, as a measure of system performance was extended to include mean time to failure and mean time to repair. Finally, details of system maintenance were considered, especially in the context of large scale integrated circuits. It was concluded that traditional maintenance techniques must rely upon fault tolerance for successful use of LSI technology." @default.
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- W2912509486 date "1981-01-01" @default.
- W2912509486 modified "2023-09-27" @default.
- W2912509486 title "A comparison of fault tolerance in large scale scientific computer systems" @default.
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