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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Optimal placement and sizing of distributed generations in distribution systems for minimizing losses and THD_v using evolutionary programming
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Optimal placement and sizing of distributed generations in distribution systems for minimizing losses and THD_v using evolutionary programming

机译:在分布式系统中优化布局和确定分布式发电系统的大小,以使用进化规划将损失和THD_v降至最低

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摘要

Growing concerns over environmental impacts, improvement of the overall network conditions, and rebate programs offered by governments have led to an increase in the number of distributed generation (DG) units in commercial and domestic electric power production. However, a large number of DG units in a distribution system may sometimes contribute to high levels of harmonic distortion, even though the emission levels of the individual DG units comply with the harmonic standards. It is known that the nonoptimal size and nonoptimal placement of DG units may lead to high power losses, bad voltage profiles, and harmonic propagations. Therefore, this paper introduces a sensitivity analysis to determine the optimal location of DG units, as well as evolutionary programming and harmonic distribution load flow for determining the optimal size of DG units in radial distribution systems. A multiobjective function is created to minimize the total losses and average total harmonic distortion voltage (THD_v) of the distribution system. The proposed methodology is tested with a 69-bus radial distribution system. The proposed optimal placement and sizing of the DG units is found to be robust and provides higher efficiency for the improvement of the voltage profile and the minimization of the losses and THD_v.
机译:人们越来越关注环境影响,改善整体网络状况以及政府提供的折扣计划,导致商业和家庭电力生产中的分布式发电(DG)单元数量增加。但是,即使单个DG单元的发射水平符合谐波标准,配电系统中的大量DG单元有时也可能导致高水平的谐波失真。众所周知,DG单元的尺寸和放置位置不理想可能会导致高功率损耗,不良的电压曲线和谐波传播。因此,本文介绍了一种敏感性分析,用于确定DG装置的最佳位置,以及用于确定径向分布系统中DG装置的最佳尺寸的进化规划和谐波分布潮流。创建了一个多目标函数,以使配电系统的总损耗和平均总谐波失真电压(THD_v)最小。所提出的方法已通过69总线的径向分配系统进行了测试。发现建议的DG单元的最佳放置和尺寸确定是可靠的,并且为改善电压分布图以及使损耗和THD_v最小化提供了更高的效率。

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