Estimation of reliability in multicomponent stress-strength based on generalized rayleigh distribution

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Abstract

A multicomponent system of k components having strengths following k-independently and identically distributed random variables x1, x2, ..., xk and each component experiencing a random stress Y is considered. The system is regarded as alive only if at least s out of k (s < k) strengths exceed the stress. The reliability of such a system is obtained when strength and stress variates are given by a generalized Rayleigh distribution with different shape parameters. Reliability is estimated using the maximum likelihood (ML) method of estimation in samples drawn from strength and stress distributions; the reliability estimators are compared asymptotically. Monte-Carlo simulation is used to compare reliability estimates for the small samples and real data sets illustrate the procedure.

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Rao, G. S. (2014). Estimation of reliability in multicomponent stress-strength based on generalized rayleigh distribution. Journal of Modern Applied Statistical Methods, 13(1), 367–379. https://doi.org/10.22237/jmasm/1398918180

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