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Reliability analysis of multiple-component series systems subject to hard and soft failures with dependent shock effects

机译:受软,硬故障影响的多部件串联系统的可靠性分析

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摘要

New reliability models have been developed for systems subject to competing hard and soft failure processes with shocks that have dependent effects. In the new model, hard failure occurs when transmitted system shocks are large enough to cause any component in a series system to fail immediately, soft failure occurs when any component deteriorates to a certain failure threshold, and system shocks affect both failure processes for all components. Our new research extends previous reliability models that had dependent failure processes, where the dependency was only because of the shared number of shock exposures and not the shock effects associated with individual system shocks. Dependency of transmitted shock sizes and shock damages to the specific failure processes for all components has not been sufficiently considered, and yet for some actual examples, this can be important. In practice, the effects of shock damages to the multiple failure processes among components are often dependent. In this article, we combine both probabilistic and physical degradation modeling concepts to develop the new system reliability model. Four different dependent patterns/scenarios of shock effects on multiple failure processes for all components are considered for series systems. This represents a significant extension from previous research because it is more realistic yet also more difficult for reliability modeling. The model is demonstrated by several examples.
机译:已经为经受竞争性硬,软故障过程以及具有相关影响的冲击的系统开发了新的可靠性模型。在新模型中,当传输的系统冲击足够大以致于导致串联系统中的任何组件立即发生故障时,就会发生硬故障;当任何组件退化到某个故障阈值时,就会发生软故障;并且系统冲击会影响所有组件的两个故障过程。我们的新研究扩展了以前具有可靠性故障过程的可靠性模型,该可靠性模型仅是由于共享的电击次数而不是与单个系统电击相关的电击效应而引起的。尚未充分考虑到传递的冲击大小和冲击损坏对所有组件的特定故障过程的依赖性,但是对于某些实际示例,这可能很重要。在实践中,冲击损坏对部件之间多个故障过程的影响通常是依赖的。在本文中,我们结合了概率和物理降级建模概念,以开发新的系统可靠性模型。对于串联系统,考虑了对所有组件的多个故障过程的冲击影响的四种不同的依赖模式/场景。这代表了先前研究的重大扩展,因为它更现实,但可靠性建模也更加困难。通过几个示例演示该模型。

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