DocumentCode :
1150288
Title :
Probability of State Transition Errors in a Finite State Machine Containing Soft Failures
Author :
Wang, Guang Xing ; Redinbo, G. Robert
Author_Institution :
Department of Computer Information and Science, Northeast Institute of Technology
Issue :
3
fYear :
1984
fDate :
3/1/1984 12:00:00 AM
Firstpage :
269
Lastpage :
277
Abstract :
A Markov model of a finite state machine realization containing gates and memory elements each subject to internal soft errors is given and a computational method for determining the probability of state transition errors is presented. The system inputs are taken as stochasticaily driven and the long-run stationary probability distribution of the states is developed. Similar results are determined for a fault-tolerant realization using error-correcting codes to form cluster states according to a technique of Reed. The state transition error performance of the coded machine is compared to that of the original realization; a dramatic improvement is seen when normally small soft error rates are encountered. The computational aspects of the required probabilities are investigated and a simplified approximation approach is proposed and analyzed. Bounds on the approximation inaccuracies are derived.
Keywords :
Approximation bounds; Markov chains; cluster states; error-correcting codes; fault-tolerant machines; long-run state probabilities; soft errors; soft fails; state transition errors; Automata; Computer errors; Error correction; Error correction codes; Failure analysis; Fault tolerance; Logic circuits; Parity check codes; State-space methods; Very large scale integration; Approximation bounds; Markov chains; cluster states; error-correcting codes; fault-tolerant machines; long-run state probabilities; soft errors; soft fails; state transition errors;
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.1984.1676424
Filename :
1676424
Link To Document :
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