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Developing a new model for availability of a series repairable system with multiple cold-standby subsystems and optimization using simulated annealing considering redundancy and repair facility allocation

机译:针对具有多个冷备用子系统的系列可修复系统的可用性,开发新模型,并使用考虑了冗余和修复设施分配的模拟退火进行优化

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摘要

Redundancy technique is considered as a way to enhance the reliability and availability of a system. This paper models availability of a repairable system with multiple subsystems in which the involved components follow cold-standby strategy. The goal is to find the optimal number of repairmen and redundant components in each subsystem for optimization of steady-state availability subject to weight, cost and volume constraints. Repairmen allocation is a new variable in redundancy allocation problem for repairable systems. This problem belongs to nonlinear programming. Due to complexity and time limitation, a simulated annealing algorithm is proposed to solve the problem. Finally, computational results of three cases with various subsystems are illustrated to prove the efficiency of the proposed algorithm.
机译:冗余技术被认为是增强系统可靠性和可用性的一种方法。本文对具有多个子系统的可修复系统的可用性进行建模,其中涉及的组件遵循冷备份策略。目的是在每个子系统中找到最佳数量的维修人员和冗余组件,以优化受重量,成本和体积限制的稳态可用性。维修人员分配是可维修系统冗余分配问题中的一个新变量。这个问题属于非线性规划。由于复杂度和时间限制,提出了一种模拟退火算法来解决该问题。最后,说明了三种情况下不同子系统的计算结果,以证明所提算法的有效性。

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