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Optimal Allocation of Multistate Components in Consecutive Sliding Window Systems

机译:连续滑动窗口系统中多状态分量的最优分配

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摘要

This paper considers a system consisting of $n$ linearly ordered multistate components. Each component can have different states: from complete failure, up to perfect functioning. A performance rate is associated with each state. The system fails if in each of at least $m$ consecutive overlapping groups of $r$ consecutive components (windows) the sum of the performance rates of components belonging to the group is lower than a minimum allowable level. It is shown that, in the case of different components, the system reliability depends on their arrangement. The optimal arrangement problem is formulated, and a numerical tool for solving this problem is suggested. The tool uses an extended universal moment generating function technique for system reliability evaluation, and a genetic algorithm for optimization. Examples of system reliability optimization are presented.
机译:本文考虑了一个由$ n $个线性有序多态分量组成的系统。每个组件可以具有不同的状态:从完全故障到完善的功能。性能率与每个状态相关联。如果在$ r $个连续组件(窗口)的至少$ m $个连续重叠组的每个组中,属于该组的组件的性能比率之和低于最低允许水平,则系统将失败。结果表明,在不同组件的情况下,系统可靠性取决于它们的布置。提出了最优布置问题,并提出了解决该问题的数值工具。该工具使用扩展的通用矩生成函数技术进行系统可靠性评估,并使用遗传算法进行优化。给出了系统可靠性优化的示例。

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