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A Combination of Evolutionary Algorithm and Game Theory for Optimal Location and Operation of DG from DG Owner Standpoints

机译:从DG所有者的角度出发,结合进化算法和博弈论对DG进行了最优定位和操作。

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The use of distributed generation (DG) resources is seen as a key important factor in improving technical and economic aspects of distribution systems. However, little research exists concerning the optimal location and operation of DGs. This paper proposes a novel method to find simultaneously the optimal location and operation of DGs. The method is developed in two phases, namely Phase 1 and 2. Phase 1 deals with the optimal location of DGs using a multiobjective optimization problem in which active power loss reduction, voltage profile improvement, and voltage regulation are the objectives. A Pareto frontier differential evolution (PDE) algorithm is developed to solve the multiobjective problem. Phase 2 copes with the optimal income of the DGs’ owners along with the optimal total payment of the distribution company by adopting a bi-level optimization method with two agents. Game theory is employed to assist in finding optimal contract prices. The performance of the proposed method is evaluated by using two IEEE, 33-bus, and 69-bus, standard distribution networks. This paper concludes that the proposed method can serve as an accurate tool for practitioners in finding the optimal location and operation strategy of DGs.
机译:分布式发电(DG)资源的使用被视为改善配电系统技术和经济方面的关键重要因素。但是,关于DG的最佳位置和操作的研究很少。本文提出了一种新的方法,可以同时找到DG的最佳位置和运行。该方法分为两个阶段,分别是阶段1和阶段2。阶段1使用多目标优化问题处理DG的最佳位置,该问题的目标是降低有功功率损耗,改善电压曲线和调节电压。为解决多目标问题,提出了一种帕累托边界微分进化算法。第二阶段通过采用两个代理商的双层优化方法来解决总公司所有者的最佳收入以及分销公司的最佳总付款。博弈论被用来协助寻找最佳合同价格。通过使用两个IEEE,33总线和69总线的标准配电网络评估了所提出方法的性能。本文的结论是,所提出的方法可以作为从业人员寻找危险物品最佳位置和操作策略的准确工具。

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