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Reliability analysis and optimal structure of series-parallel phased-mission systems subject to fault-level coverage

机译:故障级覆盖的串并联相控系统可靠性分析与优化结构

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摘要

Many practical systems have multiple consecutive and non-overlapping phases of operations during their mission and are generally referred to as phased-mission systems (PMSs). This article considers a general type of PMS consisting of subsystems connected in series, where each subsystem contains components with different capacities. The components within the same subsystem are divided into several disjoint work-sharing groups (WSGs). The capacity of each WSG is equal to the summation of the capacities of its working components, and the capacity of each subsystem is equal to the capacity of the WSG with the maximum capacity. The system capacity is bottlenecked by the capacity of the subsystem with the minimum capacity. The system survives the mission only if its capacity meets the predetermined mission demand in all phases. Such PMSs can be commonly found in the power transmission and telecommunication industries. A universal generating function-based method is first proposed for the reliability analysis of the capacitated series-parallel PMSs with the consideration of imperfect fault coverage. As different partitions of the WSGs inside a subsystem can lead to different system reliabilities, the optimal structure that maximizes the system reliability is investigated. Examples are presented to illustrate the proposed reliability evaluation method and optimization procedure.
机译:许多实用系统在执行任务期间会具有多个连续且不重叠的运行阶段,通常被称为分阶段任务系统(PMS)。本文考虑了由串联连接的子系统组成的PMS的一般类型,其中每个子系统包含具有不同容量的组件。同一子系统内的组件分为几个不相交的工作共享组(WSG)。每个WSG的容量等于其工作组件的容量之和,每个子系统的容量等于具有最大容量的WSG的容量。具有最小容量的子系统的容量会成为系统容量的瓶颈。该系统只有在其能力在所有阶段都满足预定的任务需求时,才能在任务中存活。这样的PMS可以在电力传输和电信行业中找到。首先提出了一种基于通用生成函数的方法,在考虑不完善故障覆盖的情况下,对电容串联-并联PMS进行可靠性分析。由于子系统内部WSG的不同分区可能导致不同的系统可靠性,因此研究了使系统可靠性最大化的最佳结构。通过实例说明了提出的可靠性评估方法和优化过程。

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