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A single unit system with preventive maintenance and repair subject to maximum operation and repair times

机译:具有预防性维护和维修的单个单元系统,需要最长的运行和维修时间

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The purpose of the present study is to determine reliability measures of a single-unit system considering arbitrary distributions for the random variables associated with failure time, preventive maintenance and repair times, maximum operation time, maximum repair time and replacement time. The system fails completely either directly from normal mode or via partial failure. There is a single server who visits the system immediately to do repair activities. The partially failed operating unit is shutdown after pre-specific time (called maximum operation time) for preventive maintenance. However, repair of the unit is done after its complete failure. The completely failed unit is replaced by new one if server is unable to do its repair within a maximum repair time. The unit works as new after preventive maintenance and repair. The expressions for some important measures of system effectiveness are derived using semi-Markov process and regenerative point technique. The numerical results for a particular case are obtained to depict the behavior of MTSF, availability and profit function with respect to maximum operation time for fixed values of other parameters and costs.
机译:本研究的目的是确定考虑了与故障时间,预防性维护和维修时间,最大运行时间,最大维修时间和更换时间相关的随机变量的任意分布的单机系统的可靠性度量。系统直接从正常模式完全失败或部分失败。有一个服务器立即访问系统以进行修复活动。在预先指定的时间(称为最大操作时间)后,部分故障的操作单元将关闭,以进行预防性维护。但是,在单元完全故障后才进行维修。如果服务器在最长维修时间内无法完成维修,则完全故障的部件将被新的部件替换。在进行预防性维护和维修之后,该设备将作为新设备工作。利用半马尔可夫过程和再生点技术推导了一些重要的系统有效性度量表达式。获得了特定情况下的数值结果,以描述MTSF的行为,可用性和利润函数相对于其他参数和成本的固定值的最大运行时间。

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