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A maintenance policy for repairable systems based on opportunistic failure-rate tolerance

机译:基于机会故障率容限的可修复系统维护策略

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An opportunistic hazard rate replacement policy for a repairable system with several types of units is presented. A unit is repaired at failure when the hazard rate falls in (0, L-u). A unit is replaced at failure when the hazard rate falls in (L-u, L). An operating unit is replaced when its hazard rate reaches L. When a unit is replaced because its hazard rate reaches L, all operating units with their hazard rates falling in (L-u, L) are replaced. The long-run mean cost rate as a function of L and u is derived. Optimal L and u are obtained to minimize the total maintenance cost rate. Application and analysis of results are demonstrated through a numerical example. The maintenance model is designed for a system with multitype units. Each type has its own increasing hazard rate. Units are repaired or replaced depending on their hazard rate at a failure or active replacement of another unit. The repair interval, replacement limit, and replacement tolerance are determined to yield the optimal total maintenance cost rate.
机译:提出了一种具有几种类型单元的可修复系统的机会风险率替换策略。当危险率下降到(0,L-u)时,将对单元进行故障修复。当危险率降到(L-u,L)时,在故障时更换设备。当操作单元的危险率达到L时,将对其进行更换。如果由于操作单元的危险率达到L而进行了更换,则将所有危险率降至(L-u,L)的操作单元进行更换。得出了L和u的长期平均成本率。获得最佳的L和u以最大程度地降低总维护成本率。通过数值示例演示了结果的应用和分析。维护模型是为具有多类型单元的系统设计的。每种类型都有其不断增加的危险率。在发生故障或主动更换另一台设备时,根据其危险率对设备进行维修或更换。确定维修间隔,更换极限和更换公差以产生最佳的总维护成本率。

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