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A recursive framework for time-dependent characteristics of tested and maintained standby units with arbitrary distributions for failures and repairs

机译:递归框架,用于测试和维护的备用单元随时间变化的特征,具有任意分布的故障和维修

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The time-dependent unavailability and the failure and repair intensities of periodically tested aging standby system components are solved with recursive equations under three categories of testing and repair policies. In these policies, tests or repairs or both can be minimal or perfect renewals. Arbitrary distributions are allowed to times to failure as well as to repair and renewal durations. Major preventive maintenance is done periodically or at random times, e.g. when a true demand occurs. In the third option process renewal is done if a true demand occurs or when a certain mission time has expired since the previous maintenance, whichever occurs first. A practical feature is that even if a repair can renew the unit, it does not generally renew the alternating process. The formalism updates and extends earlier results by using a special backward-renewal equation rhethod, by allowing scheduled tests not limited to equal intervals and accepting arbitrary distributions and multiple failure types and causes, including failures caused by tests, human errors and true demands. Explicit solutions are produced to integral equations associated with an age-renewal maintenance policy. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在三类测试和修复策略下,使用递归方程式来解决定期测试的老化备用系统组件的时间依赖性,故障率和修复强度。在这些政策中,测试或维修或两者都可以是最少或完美的续签。允许任意分配故障发生时间以及修复和更新期限。定期或随机(例如,定期)进行重大的预防性维护。当真正的需求发生时。在第三个选项中,如果发生真正的需求或自上次维护以来某个任务时间已过,则进行更新,以先到者为准。一个实用的功能是,即使维修可以更新设备,也通常不会更新替换过程。形式主义通过使用特殊的向后更新方程式rhethod更新和扩展了较早的结果,允许排定的测试不限于相等的时间间隔,并接受任意分布以及多种故障类型和原因,包括由测试,人为错误和真实要求引起的故障。显式解产生与寿命更新维护策略相关的积分方程。 (C)2015 Elsevier Ltd.保留所有权利。

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