NASA NTRS · 19890002911
Fault diagnosis in sparse multiprocessor systems
Abstract
The problem of fault diagnosis in multiprocessor systems is considered under a uniformly probabilistic model in which processors are faulty with probability p. This work focuses on minimizing the number of tests that must be conducted in order to correctly diagnose the state of every processor in the system with high probability. A diagnosis algorithm that can correctly diagnose the state of every processor with probability approaching one in a class of systems performing slightly greater than a linear number of tests is presented. A nearly matching lower bound on the number of tests required to achieve correct diagnosis in arbitrary systems is also proven. The number of tests required under this probabilistic model is shown to be significantly less than under a bounded-size fault set model. Because the number of tests that must be conducted is a measure of the diagnosis overhead, these results represent a dramatic improvement in the performance of system-level diagnosis technique.
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Blough, Douglas M., Sullivan, Gregory F., Masson, Gerald M.. 1988-11-29. Fault diagnosis in sparse multiprocessor systems. https://ntrs.nasa.gov/citations/19890002911
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