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Fuzzy programming for improving redundancy-reliability allocation problems in series-parallel systems

机译:用于改善串并联系统中冗余可靠性分配问题的模糊规划

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摘要

Redundancy-reliability allocation problems in multi-stage series-parallel systems are addressed in this study. Fuzzy programming techniques are proposed for finding satisfactory solutions. First, a multi-objective programming model is formulated for simultaneously maximizing system reliability and minimizing system total cost. Due to the nature of uncertainty in the problem, the fuzzy set theory and technique are used to convert the deterministic multi-objective programming model into a fuzzy nonlinear programming problem. A heuristic method is developed to get satisfactory solutions for the fuzzy nonlinear programming problem. A Pareto optimal solution is found with maximal degree of satisfaction from the interception area of fuzzy sets. A case study that is related to the electronic control unit installed on aircraft engine over-speed protection system is used to implement the developed approach. Results suggest that the developed fuzzy multi-objective programming model can effectively resolve the fuzzy and uncertain problem when design goals and constraints are not clearly confirmed at the initial conceptual design phase.
机译:本研究解决了多级串并联系统中的冗余可靠性分配问题。为了找到满意的解决方案,提出了模糊规划技术。首先,建立了一个多目标编程模型,以同时最大化系统可靠性和最小化系统总成本。由于问题不确定性的性质,使用模糊集理论和技术将确定性多目标规划模型转换为模糊非线性规划问题。开发了一种启发式方法来获得模糊非线性规划问题的满意解。从模糊集的截获区域中找到最大满意程度的帕累托最优解。以与飞机发动机超速保护系统上安装的电子控制单元有关的案例研究为基础,来实现所开发的方法。结果表明,当在初始概念设计阶段未明确确定设计目标和约束条件时,开发的模糊多目标规划模型可以有效解决模糊和不确定的问题。

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