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首页> 外文期刊>Journal of Optimization in Industrial Engineering >A Compromise Decision-making Model for Multi-objective Large-scale Programming Problems with a Block Angular Structure under Uncertainty
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A Compromise Decision-making Model for Multi-objective Large-scale Programming Problems with a Block Angular Structure under Uncertainty

机译:不确定条件下具有块角结构的多目标大规模规划问题的折衷决策模型

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This paper proposes a compromise model, based on the technique for order preference through similarity ideal solution (TOPSIS) methodology, to solve the multi-objective large-scale linear programming (MOLSLP) problems with block angular structure involving fuzzy parameters. The problem involves fuzzy parameters in the objective functions and constraints. This compromise programming method is based on the assumption that the optimal alternative is closer to fuzzy positive ideal solution (FPIS) and at the same time, farther from fuzzy negative ideal solution (FNIS).An aggregating function that is developed from LP- metric is based on the particular measure of ‘‘closeness” to the ‘‘ideal” solution.An efficient distance measurement is utilized to calculate positive and negative ideal solutions. The solution process is as follows: first, the decomposition algorithm is used to divide the large-dimensional objective space into a two-dimensional space. A multi-objective identical crisp linear programming is derived from the fuzzy linear model for solving the problem. Then, a single-objective large-scale linear programming problem is solved to find the optimal solution. Finally, to illustrate the proposed method, an illustrative example is provided.
机译:本文提出了一种折衷模型,该模型基于一种通过相似性理想解(TOPSIS)方法进行订单优先选择的技术,以解决带有模糊参数的块角结构的多目标大规模线性规划(MOLSLP)问题。问题涉及目标函数和约束中的模糊参数。这种折衷的编程方法基于以下假设:最优替代方案更接近于模糊正理想解决方案(FPIS),同时又远离模糊负理想解决方案(FNIS)。从LP度量开发的聚合函数为基于对“理想”解的“接近性”的特殊度量。有效的距离测量用于计算正负理想解。解决过程如下:首先,使用分解算法将大尺寸目标空间划分为二维空间。从模糊线性模型中导出了多目标相同的清晰线性规划,以解决该问题。然后,解决了单目标大规模线性规划问题,找到了最优解。最后,为了说明所提出的方法,提供了说明性示例。

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