Sequential-Based Approach for Estimating the Stress-Strength Reliability Parameter for Exponential Distribution

IF 0.1 Q4 STATISTICS & PROBABILITY
Ashkan Khalifeh, E. Mahmoudi, A. Dolati
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引用次数: 0

Abstract

In this paper, two-stage and purely sequential estimation procedures are considered to construct fixed-width confidence intervals for the reliability parameter under the stress-strength model when the stress and strength are independent exponential random variables with different scale parameters. The exact distribution of the stopping rule under the purely sequential procedure is approximated using the law of large numbers and Monte Carlo integration. For the two-stage sequential procedure, explicit formulas for the distribution of the total sample size, the expected value and mean squared error of the maximum likelihood estimator of the reliability parameter under the stress-strength model are provided. Moreover, it is shown that both proposed sequential procedures are finite, and in exceptional cases, the exact distribution of stopping times is degenerate distribution at the initial sample size. The performances of the proposed methodologies are investigated with the help of simulations. Finally using real data, the procedures are clearly illustrated.
基于序列的指数分布应力强度可靠性参数估计方法
当应力和强度是具有不同尺度参数的独立指数随机变量时,考虑两阶段和纯序列估计程序来构造应力-强度模型下可靠性参数的固定宽度置信区间。使用大数定律和蒙特卡罗积分来近似纯序列过程下停止规则的精确分布。对于两阶段序列过程,给出了应力-强度模型下可靠性参数最大似然估计量的总样本量分布、期望值和均方误差的显式公式。此外,研究表明,这两个序列过程都是有限的,并且在特殊情况下,停止时间的精确分布在初始样本量下是退化分布。在仿真的帮助下,对所提出的方法的性能进行了研究。最后使用真实数据,清楚地说明了程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.50
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0.00%
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