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Reliability Modeling using Sharpe

Publication ,  Journal Article
Sahner, RA; Trivedi, KS
Published in: IEEE Transactions on Reliability
January 1, 1987

Conclusions-Combinatorial models such as fault trees and reliability block diagrams are efficient for model specification and often efficient in their evaluation. But it is difficult, if not impossible, to allow for dependencies (such as repair dependency and near-coincident-fault type dependency), transient and intermittent faults, standby systems with warm spares, and so on. Markov models can capture such important system behavior, but the size of a Markov model can grow exponentially with the number of components in the system.This paper presents an approach for avoiding the large state-space problem. The approach uses a hierarchical modeling technique for analyzing complex reliability models. It allows the flexibility of Markov models where necessary and retains the efficiency of combinatorial solution where possible. Based on this approach a computer program called SHARPE (Symbolic Hierarchical Automated Reliability and Performance Evaluator) has been written.The hierarchical modeling technique provides a very flexible mechanism for using decomposition and aggregation to model large systems; it allows for both combinatorial and Markov or semi-Markov submodels, and can analyze each model to produce a distribution function. The choice of the number of levels of models and the model types at each level is left up to the modeler. Component distribution functions can be any exponential polynomial whose range is between zero and one.Examples show how combinations of models can be used to evaluate the reliability and availability of large systems using SHARPE. Copyright © 1987 by The Institute of Electrical and Electronics Engineers, Inc.

Duke Scholars

Published In

IEEE Transactions on Reliability

DOI

EISSN

1558-1721

ISSN

0018-9529

Publication Date

January 1, 1987

Volume

R-36

Issue

2

Start / End Page

186 / 193

Related Subject Headings

  • Operations Research
  • 4612 Software engineering
  • 4010 Engineering practice and education
  • 0906 Electrical and Electronic Engineering
  • 0803 Computer Software
 

Citation

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Sahner, R. A., & Trivedi, K. S. (1987). Reliability Modeling using Sharpe. IEEE Transactions on Reliability, R-36(2), 186–193. https://doi.org/10.1109/TR.1987.5222336
Sahner, R. A., and K. S. Trivedi. “Reliability Modeling using Sharpe.” IEEE Transactions on Reliability R-36, no. 2 (January 1, 1987): 186–93. https://doi.org/10.1109/TR.1987.5222336.
Sahner RA, Trivedi KS. Reliability Modeling using Sharpe. IEEE Transactions on Reliability. 1987 Jan 1;R-36(2):186–93.
Sahner, R. A., and K. S. Trivedi. “Reliability Modeling using Sharpe.” IEEE Transactions on Reliability, vol. R-36, no. 2, Jan. 1987, pp. 186–93. Scopus, doi:10.1109/TR.1987.5222336.
Sahner RA, Trivedi KS. Reliability Modeling using Sharpe. IEEE Transactions on Reliability. 1987 Jan 1;R-36(2):186–193.

Published In

IEEE Transactions on Reliability

DOI

EISSN

1558-1721

ISSN

0018-9529

Publication Date

January 1, 1987

Volume

R-36

Issue

2

Start / End Page

186 / 193

Related Subject Headings

  • Operations Research
  • 4612 Software engineering
  • 4010 Engineering practice and education
  • 0906 Electrical and Electronic Engineering
  • 0803 Computer Software