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(m, M) Machining system with two unreliable servers, mixed spares and common-cause failure

机译:(m,M)具有两个不可靠服务器,混合备用件和常见原因故障的加工系统

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This paper deals with multi-component machine repair model having provision of warm standby units and repair facility consisting of two heterogeneous servers (primary and secondary) to provide repair to the failed units. The failure of operating and standby units may occur individually or due to some common cause. The primary server may fail partially following full failure whereas secondary server faces complete failure only. The life times of servers and operating/standby units and their repair times follow exponential distribution. The successive over relaxation (SOR) technique has been used to obtain the steady state queue size distribution of the number of failed units in the system. To explore the system characteristics, various performance indices such as expected number of failed units in the queue, throughput, etc. have been obtained. Numerical results have been provided to illustrate the computational tractability of the proposed SOR technique. To examine the effect of system descriptors on the performance indices, the sensitivity analysis is also performed.
机译:本文讨论了具有热备用单元和由两个异构服务器(主服务器和辅助服务器)组成的维修设施的多组件机器维修模型,以对故障单元进行维修。操作和备用单元的故障可能单独发生,也可能由于某些常见原因而发生。在完全故障之后,主服务器可能会部分失败,而辅助服务器仅会面临完全故障。服务器和操作/备用单元的使用寿命及其维修时间遵循指数分布。连续过度松弛(SOR)技术已用于获取系统中故障单元数的稳态队列大小分布。为了探索系统特性,已获得各种性能指标,例如队列中故障单元的预期数量,吞吐量等。提供了数值结果来说明所提出的SOR技术的计算可处理性。为了检查系统描述符对性能指标的影响,还执行了敏感性分析。

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