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:: Volume 28, Issue 1 (9-2023) ::
Andishe 2023, 28(1): 113-124 Back to browse issues page
Statistical inference on multi-component stress-strength parameter in three parameter Weibull distribution
Akram Kohansal * , Atefeh Karami
Department of Statistics, Imam Khomeini International University, Qazvin, Iran
Abstract:   (551 Views)

The statistical inference of the multi-component stress-strength parameter, $R_{s,k}$, is considered in the three-parameter Weibull distribution. The problem is studied in two cases. In the first case, assuming that the stress and strength variables have common shape and location parameters and non-common scale parameters and all these parameters are unknown, the maximum likelihood estimation and the Bayesian estimation of the parameter $‎R_{s,k}$ are investigated. In this case, as the Bayesian estimation does not have a closed form, it is approximated by two methods, Lindley and $mbox{MCMC}$. Also, asymptotic confidence intervals have been obtained. In the second case, assuming that the stress and strength variables have known common shape and location parameters and non-common and unknown scale parameters, the maximum likelihood estimation, the uniformly minimum variance unbiased estimators, the exact Bayesian estimation of the parameter $‎R_{s,k}$ and the asymptotic confidence interval is calculated. Finally, using Monte Carlo simulation, the performance of different estimators has been compared.

Keywords: Multi-component stress-strength parameter, Bayesian estimate, Lindley's approximation, Three-parameter Weibull distribtuion
Full-Text [PDF 239 kb]   (184 Downloads)    
Type of Study: Research | Subject: Special
Received: 2023/11/11 | Accepted: 2024/03/9 | Published: 2024/03/15
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Kohansal A, Karami A. Statistical inference on multi-component stress-strength parameter in three parameter Weibull distribution. Andishe 2023; 28 (1) :113-124
URL: http://andisheyeamari.irstat.ir/article-1-941-en.html


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Volume 28, Issue 1 (9-2023) Back to browse issues page
مجله اندیشه آماری Andishe _ye Amari
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