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A multi-objective discrete reliability optimization problem for dissimilar-unit standby systems

机译:异构机组备用系统的多目标离散可靠性优化问题

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A new methodology for the reliability optimization of a k dissimilar-unit nonrepairable cold-standby redundant system is introduced in this paper. Each unit is composed of a number of independent components with generalized Erlang distributions of lifetimes arranged in a series-parallel configuration. We also propose an approximate technique to extend the model to the general types of nonconstant hazard functions. To evaluate the system reliability, we apply the shortest path technique in stochastic networks. The purchase cost of each component is assumed to be an increasing function of its expected lifetime. There are multiple component choices with different distribution parameters available for replacement with each component of the system. The objective of the reliability optimization problem is to select the best components, from the set of available components, to be placed in the standby system to minimize the initial purchase cost of the system, maximize the system mean time to failure, minimize the system variance of time to failure, and also maximize the system reliability at the mission time. The goal attainment method is used to solve a discrete time approximation of the original problem.
机译:提出了一种新的k异种不可修复冷备冗余系统可靠性优化的方法。每个单元都由许多独立的组件组成,这些组件的寿命以广义的Erlang分布以串行-并行配置排列。我们还提出了一种近似技术,将模型扩展到非恒定危害函数的一般类型。为了评估系统可靠性,我们在随机网络中应用了最短路径技术。假定每个组件的购买成本是其预期寿命的增加函数。有多种具有不同分布参数的组件可供选择,可以用系统的每个组件进行替换。可靠性优化问题的目的是从可用组件集中选择最佳组件,以放置在备用系统中,以最小化系统的初始购买成本,最大化系统平均故障时间,最小化系统差异缩短故障时间,并在任务执行时最大程度地提高系统可靠性。目标达成方法用于求解原始问题的离散时间近似值。

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