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A multi-objective optimization based solution for the combined economic-environmental power dispatch problem

机译:基于多目标优化的经济环境电力联合调度问题解决方案

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摘要

The combined economic-environmental dispatch issue is multidimensional, non-linear, non-convex and highly constrained problem. It involves multiple and often conflicting optimization criteria for which no unique optimal solution can be determined with respect to all criteria. In this paper a multi-objective optimization based solution to the combined economic-environmental power dispatch is proposed. The derivation of the optimal solution is based on the weighted sum method for which improvements are made in direction of penalty function integration. For that purpose a modified dynamic normalization is suggested. A penalization method based on membership functions is introduced in order to calculate the constraint violations. The objective of the proposed method is gaining an optimal solution for the dynamic combined economic-environmental dispatch problem associated to real power systems. Therefore, the algorithm is applied on different test power systems. The obtained results are analyzed and compared with various optimization techniques presented in the literature. The results demonstrate the efficiency of the proposed method in finding solutions toward global optimum.
机译:经济-环境调度的组合问题是多维,非线性,非凸且高度受限的问题。它涉及多个且经常相互冲突的优化标准,无法针对所有标准确定唯一的最佳解决方案。本文提出了一种基于多目标优化的经济环境电力联合调度解决方案。最优解的推导基于加权和方法,在惩罚函数积分的方向上进行了改进。为此,建议进行修改的动态归一化。为了计算约束违规,引入了一种基于隶属度函数的惩罚方法。所提出的方法的目的是获得与实际电力系统相关的动态组合经济-环境调度问题的最优解。因此,该算法适用于不同的测试电源系统。对获得的结果进行分析,并与文献中介绍的各种优化技术进行比较。结果证明了该方法在寻找全局最优解中的效率。

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