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首页> 外文期刊>Journal of Industrial Engineering International >An interactive weighted fuzzy goal programming technique to solve multi-objective reliability optimization problem
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An interactive weighted fuzzy goal programming technique to solve multi-objective reliability optimization problem

机译:解决多目标可靠性优化问题的交互式加权模糊目标规划技术

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This paper presents an application of interactive fuzzy goal programming to the nonlinear multi-objective reliability optimization problem considering system reliability and cost of the system as objective functions. As the decision maker always have an intention to produce highly reliable system with minimum cost, therefore, we introduce the interactive method to design a high productivity system here. This method plays an important role to maximize the worst lower bound to obtain the preferred compromise solution which is close to the best upper bound of each objective functions. Until the preferred compromise solution is reached, new lower bounds corresponding to each objective functions will be determined based on the present solution to develop the updated membership functions as well as aspiration levels to resolve the proposed problem. Considering judgmental vagueness of decision maker, here we consider the resources as trapezoidal fuzzy numbers and apply total integral value of fuzzy number to transform into crisp one. To illustrate the methodology and performance of this approach, numerical examples are presented and evaluated by comparing with the other method at the end of this paper.
机译:本文以系统可靠性和系统成本为目标函数,提出了一种交互式模糊目标规划方法在非线性多目标可靠性优化问题中的应用。由于决策者一直希望以最低的成本生产出高度可靠的系统,因此,我们在此介绍交互式方法来设计高生产率的系统。该方法在最大化最差下限以获得接近每个目标函数的最佳上限的首选折衷解决方案方面发挥着重要作用。在达到优选的折衷解决方案之前,将基于当前解决方案确定与每个目标函数相对应的新下限,以开发更新的隶属函数以及解决所提出问题的期望水平。考虑到决策者的判断模糊性,此处将资源视为梯形模糊数,并将模糊数的总积分值转化为清晰的数。为了说明这种方法的方法和性能,通过与本文末尾的另一种方法进行比较,给出了数值示例并进行了评估。

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