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Reliability modelling of a parallel system with maximum operation and repair times

机译:具有最大运行和维修时间的并行系统的可靠性建模

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A parallel system of two identical units has been analysed under the aspects of maximum operation and repair times. The unit fails directly from normal mode. A single server is called immediately to conduct preventive maintenance of the unit after a pre-specific time 't' (called maximum operation time). The replacement of the unit is made by new one in case its repair is not possible by the server in a given maximum repair time. The unit works as new after preventive maintenance and repair. The distributions of failure time of the unit, the time to which unit undergoes for preventive maintenance and replacement are taken as negative exponential. However, the distributions of preventive maintenance, repair and replacement times are considered as arbitrary with different probability density functions. The expressions for several reliability measures are derived in steady-state using semi-Markov process and regenerative point technique. The graphical behaviour of the MTSF, availability and profit function has been examined giving arbitrary values to various parameters and costs. The profit of the system model has also been obtained considering different costs.
机译:在最大操作和维修时间方面,对两个相同单元的并行系统进行了分析。本机直接从正常模式发生故障。在预先指定的时间“ t”(称为最大运行时间)之后,立即调用一台服务器对设备进行预防性维护。如果在给定的最大维修时间内服务器无法维修,则更换新的部件。在进行预防性维护和维修之后,该设备将作为新设备工作。设备的故障时间分布,设备进行预防性维护和更换所花费的时间被视为负指数。但是,具有不同概率密度函数的预防性维护,维修和更换时间的分布被认为是任意的。利用半马尔可夫过程和再生点技术在稳态下推导了几种可靠性测度的表达式。已经检查了MTSF,可用性和利润函数的图形行为,为各种参数和成本提供了任意值。考虑到不同的成本,还获得了系统模型的利润。

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