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Inference for a Step-Stress Model With Competing Risks for Failure From the Generalized Exponential Distribution Under Type-I Censoring

机译:从I型删失下的广义指数分布推论具有竞争失败风险的Step-Stress模型

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摘要

In a reliability experiment, accelerated life-testing allows higher-than-normal stress levels on test units. In a special class of accelerated life tests known as step-stress tests, the stress levels are increased at some pre-planned time points, allowing the experimenter to obtain information on the lifetime parameters more quickly than under normal operating conditions. Also, when a test unit fails, there are often several risk factors associated with the cause of failure (i.e., mechanical, electrical, etc.). In this article, the step-stress model under Type-I censoring is considered when the different risk factors have -independent generalized exponential lifetime distributions. With the assumption of cumulative damage, the point estimates of the unknown scale and shape parameters of the different causes are derived using the maximum likelihood approach. Using the asymptotic distributions and the parametric bootstrap method, we also discuss the construction of confidence intervals for the parameters. The precision of the estimates and the performance of the confidence intervals are assessed through extensive Monte Carlo simulations, and lastly, the method of inference discussed here is illustrated with examples.
机译:在可靠性实验中,加速的寿命测试允许测试单元上的应力水平高于正常水平。在称为阶跃压力测试的一类特殊的加速寿命测试中,应力水平会在某些预先计划的时间点增加,从而使实验人员比正常操作条件下更快地获得有关寿命参数的信息。而且,当测试单元发生故障时,通常会存在与故障原因相关的多种风险因素(即机械,电气等)。在本文中,当不同的风险因素具有独立的广义指数寿命分布时,将考虑类型I审查下的逐步压力模型。在累积损坏的假设下,使用最大似然方法得出不同原因的未知比例和形状参数的点估计。使用渐近分布和参数引导程序,我们还讨论了参数置信区间的构造。估计的精度和置信区间的性能通过广泛的蒙特卡洛模拟进行评估,最后,通过示例说明了此处讨论的推理方法。

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