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Load Concentration Factor Based Analytical Method for Optimal Placement of Multiple Distribution Generators for Loss Minimization and Voltage Profile Improvement

机译:基于负荷集中因子的分析方法,用于优化配电网的最佳布置,以最小化损耗并改善电压分布

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摘要

This paper presents novel separate methods for finding optimal locations, sizes of multiple distributed generators (DGs) simultaneously and operational power factor in order to minimize power loss and improve the voltage profile in the distribution system. A load concentration factor (LCF) is introduced to select the optimal location(s) for DG placement. Exact loss formula based analytical expressions are derived for calculating the optimal sizes of any number of DGs simultaneously. Since neither optimizing the location nor optimizing the size is done iteratively, like existing methods do, the simulation time is reduced considerably. The exhaustive method is used to find the operational power factor, and it is shown with the results that the losses are further reduced and voltage profile is improved by operating the DGs at operational power factor. Results for power loss reduction and voltage profile improvement in IEEE 37 and 119 node radial distribution systems are presented and compared with the the loss sensitivity factor (LSF) method, improved analytical (IA) and exhaustive load flow method (ELF). The comparison for operational power factor and other power factors is also presented.
机译:本文介绍了新颖的单独方法,可同时找到最佳位置,多个分布式发电机(DG)的大小和运行功率因数,以最大程度地降低功率损耗并改善配电系统中的电压曲线。引入负载集中系数(LCF)来选择DG放置的最佳位置。导出了基于精确损耗公式的解析表达式,用于同时计算任意数量的DG的最佳尺寸。由于既没有像现有方法那样迭代地优化位置也没有优化尺寸,因此仿真时间大大减少了。使用穷举法来找到工作功率因数,结果表明,通过以工作功率因数操作DG,可以进一步降低损耗并改善电压曲线。给出了IEEE 37和119节点径向配电系统中降低功率损耗和改善电压分布的结果,并将其与损耗敏感度(LSF)方法,改进的分析(IA)和穷举潮流(ELF)进行了比较。还介绍了工作功率因数与其他功率因数的比较。

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