Harmonic filters planning of system for specially connected transformers using PSO-NTVE method

Ying-Pin Chang
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Abstract

This paper is used to investigate the harmonic filters planning of a power system with three-phase to two-phase specially connected transformers. A particle swarm optimization method with nonlinear time-varying evolution (PSO-NTVE) is employed in the planning of large-scale passive harmonic filters. The objective is to minimize the cost of the filter, the filters loss, the total harmonic distortion of currents and voltages at each bus simultaneously. The reactive power compensation and constraints of individual harmonics are also considered. Three design cases are compared to demonstrate the design results. The study results shows that the scheme type of three-phase to two-phase specially connected transformers have significant effects on the harmonic distribution. The phase B of VV connection scheme has reduced 3rd order harmonic distortion, the Scott and Le Blanc connection scheme batter than VV connection scheme for improved harmonic distortion, and the many typical passive filters structure batter than one typical filter. From the results of the illustrative examples, the feasibility of the PSO-NTVE to design an optimal passive harmonic filter is verified.
用PSO-NTVE方法规划特殊连接变压器系统的谐波滤波器
本文研究了三相到两相特殊连接变压器电力系统的谐波滤波器规划问题。将非线性时变演化粒子群优化方法(PSO-NTVE)应用于大型无源谐波滤波器的规划。目标是最小化滤波器的成本,滤波器损耗,同时在每个母线上电流和电压的总谐波畸变。本文还考虑了无功补偿和个别谐波的约束。通过对三个设计实例的对比,论证了设计结果。研究结果表明,三相至两相专用变压器的方案类型对谐波分布有显著影响。B相VV连接方案降低了三阶谐波畸变,Scott和Le Blanc连接方案优于VV连接方案改善谐波畸变,多个典型无源滤波器结构优于一个典型滤波器结构。通过算例分析,验证了PSO-NTVE设计最优无源谐波滤波器的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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