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首页> 外文期刊>Journal of Electrical Engineering >A Simultaneous Biogeography based Optimal Placement of DG Units and Capacitor Banks in Distribution Systems with Nonlinear Loads
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A Simultaneous Biogeography based Optimal Placement of DG Units and Capacitor Banks in Distribution Systems with Nonlinear Loads

机译:基于同时生物地理学的非线性负荷分配系统中DG单元和电容器组的最佳放置

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This paper uses a new algorithm namely biogeography based optimization (BBO) intended for the simultaneous placement of the distributed generation (DG) units and the capacitor banks in the distribution network. The procedure of optimization has been conducted in the presence of nonlinear loads (a cause of harmonic injection). The purpose of simultaneous optimal placement of the DG and the capacitor is the reduction of active and reactive losses. The difference in the values of loss reduction at different levels of the load have been included in the objective function and the considered objective function includes the constraints of voltage, size and the number of DG units and capacitor banks and the allowable range of the total harmonic distortion (THD) of the total voltage in accordance with the IEEE 519 standards. In this paper the placement has been performed on two load types ie constant and mixed power, moreover the effects of load models on the results and the effects of optimal placement on reduction of the THD levels have also been analyzed. The mentioned cases have been studied on a 33 bus radial distribution system.
机译:本文使用一种新的算法,即基于生物地理的优化(BBO),旨在同时在配电网中放置分布式发电(DG)单元和电容器组。优化过程是在存在非线性负载(谐波注入的原因)的情况下进行的。同时优化放置DG和电容器的目的是减少有功和无功损耗。目标函数中包括了在不同负载水平下损耗降低值的差异,并且所考虑的目标函数包括电压,大小和DG单元和电容器组的数量以及总谐波允许范围的约束符合IEEE 519标准的总电压失真(THD)。在本文中,已对两种负载类型(即恒定功率和混合功率)进行了放置,此外,还分析了负载模型对结果的影响以及最佳放置对降低总谐波失真水平的影响。提到的案例已经在33总线径向分配系统上进行了研究。

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