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A multi-objective optimization method for system reliability allocation

机译:一种用于系统可靠性分配的多目标优化方法

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A multi-objective optimization method for system reliability allocation was proposed. Firstly, a constrained multi-objective optimization model for system reliability allocation was established with the objective to maximize the system reliability, minimize the cost, volume and mass. Secondly, aiming at the characteristic of the model, a non dominated sorting genetic algorithm with elitist strategy (NSGA II) was presented and designed. In the algorithm, an object-oriented technique was introduced to map each individual to each corresponding object and a population to an array of objects, each individual was encoded by each corresponding vector made up of the selection indices of every function unit, the tournament selection strategy was used to implement the selection operation based on the ranks and congestion degrees of the individuals, a swap way of two-point gene segment was used to implement the crossover operation, a one point mutation way was used to implement the mutation operation and the Pareto operation was implemented based on the ranks and congestion degrees of the individuals. Finally, the effectiveness of the proposed research was validated by case study.
机译:提出了系统的可靠性分配的多目标优化方法。首先,与目标建立了系统的可靠性分配的约束多目标优化模型以最大化系统的可靠性,降低了成本,体积和质量。其次,针对该模型中,支配排序遗传算法的精英策略(NSGA II)非的特性,提出和设计的。在该算法中,面向对象的技术引入到图中的每个个体到每个相应的对象和人口到对象的数组,每个单独的通过每个对应的载体编码由每个功能单元的选择指数的充满,锦标赛选择策略用于实现基于个人的队伍,拥挤度的选择操作,两点基因片段的交换方式来实现交叉操作,来实现变异操作的一个点突变的方式和帕累托操作是基于个人的队伍,拥挤度来实现。最后,提出了研究的有效性进行案例验证。

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