Effect of optimal allocation of multiple DG and D-STATCOM in radial distribution system for minimizing losses and THD

A. Gupta
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引用次数: 16

Abstract

The expansion of power system has led to the increase of Distributed Generation (DG) to fulfil the increase in the load demand. The DG opted has led to the increase in the losses and voltage imbalance due to improper allocation. Rapid increase in nonlinear loads in our daily life has introduced the power quality problems in the power system in terms of harmonics. In this paper, the optimal placement of multiple DG and Distribution Static Compensator (D-STATCOM) in a radial distribution system is carried out which results in the reduction of line losses as well as Total Harmonic Distortion (THD). The optimal location of DG and D-STATCOM is determined by stability index. The optimal size of DG and D-STATCOM is determined using variation technique by increasing the size in steps. The load flow analysis and harmonic flow analysis is carried out on IEEE 34 bus system having the harmonic sources injected as current sources.
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径向配电系统中多DG和D-STATCOM优化配置对最大损耗和最小THD的影响
随着电力系统规模的不断扩大,分布式发电的需求不断增加,以满足日益增长的负荷需求。选择的DG由于配置不当导致损耗增加,电压不平衡。在我们的日常生活中,非线性负荷的迅速增加给电力系统带来了谐波方面的电能质量问题。本文对径向配电系统中多个DG和配电静态补偿器(D-STATCOM)的优化配置进行了研究,从而降低了线路损耗和总谐波失真(THD)。通过稳定性指标确定DG和D-STATCOM的最优位置。采用变分法逐步增大DG和D-STATCOM的尺寸,确定了DG和D-STATCOM的最佳尺寸。对注入谐波源作为电流源的IEEE 34母线系统进行了负荷流分析和谐波流分析。
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