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首页> 外文期刊>IEEE Transactions on Reliability >Reliability Analysis for Multi-Component Systems Subject to Multiple Dependent Competing Failure Processes
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Reliability Analysis for Multi-Component Systems Subject to Multiple Dependent Competing Failure Processes

机译:经受多个相关竞争失败过程的多组件系统的可靠性分析

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摘要

For complex multi-component systems with each component experiencing multiple failure processes due to simultaneous exposure to degradation and shock loads, we developed a new multi-component system reliability model, and applied two different preventive maintenance policies. This new model extends previous research, and is different from related previous research by considering an assembled system of degrading components with $s$-dependent failure times resulting from shared shock exposure. Previous research primarily pertained to a single component or simple system, or systems with $s$-independent failure processes and failure times. In our new system model, the individual failure processes for each component and the component failure processes are all $s$-dependent. These models can be applied directly, or customized for many complex systems with multiple components that experience $s$ -dependent competing failure processes. In this model, each component can fail due to a soft failure process, or a hard failure process. These two component failure processes are mutually competing and $s$-dependent. If one component fails relatively frequently, it is likely that the number of shocks is relatively large, and these shocks impact all components potentially causing them to fail more often as well. Therefore, failure processes of all components are also $s$-dependent. An age replacement policy and an inspection-based maintenance policy are applied for a system with multiple components. The optimal replacement interval or inspection times are determined by minimizing a cost ra- e function. The model is demonstrated on several examples.
机译:对于复杂的多组件系统,每个组件由于同时暴露在退化和冲击载荷下而经历多个故障过程,我们开发了新的多组件系统可靠性模型,并应用了两种不同的预防性维护策略。这个新模型扩展了以前的研究,并且与以前的相关研究有所不同,它考虑的是一个组装组件降解系统,该系统具有因共享的冲击暴露而导致的$ s $依赖的故障时间。先前的研究主要涉及单个组件或简单系统,或具有独立于$ s $的故障过程和故障时间的系统。在我们的新系统模型中,每个组件的个别故障过程和组件故障过程均与$ s $相关。这些模型可以直接应用,也可以为具有多个组件的复杂系统定制,这些组件会经历依赖于竞争的失败过程。在此模型中,每个组件都可能由于软故障过程或硬故障过程而发生故障。这两个组件的失败过程是相互竞争的,并且取决于$ s $。如果一个组件相对频繁地发生故障,则冲击的数量可能会相对较大,并且这些冲击会影响所有组件,并可能导致它们更频繁地发生故障。因此,所有组件的故障过程也取决于$ s $。年龄更换策略和基于检查的维护策略适用于具有多个组件的系统。最佳更换间隔或检查时间是通过最小化成本收益函数来确定的。在几个示例中演示了该模型。

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