A repetitive control scheme to improve performance of UPQC under distorted source and nonlinear load conditions

Quoc-Nam Trinh, Hong‐Hee Lee
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引用次数: 3

Abstract

This paper proposes an enhanced control strategy for three-phase unified power quality conditioners (UPQCs) under the distorted source and nonlinear load conditions. The proposed controller consists of a proportional-integral and a repetitive controller (RC), which is developed on both the series and the shunt APFs of the UPQC to compensate (6n±1) (n=1, 2, 3...) harmonic voltages in distorted source voltage and those harmonic currents produced by nonlinear loads. As a result, the load voltage and the supply current are compensated to be sinusoidal. In the proposed RC, the delay time is reduced to be one-sixth of the fundamental period which is much shorter than that of the traditional RC, i.e., one fundamental period. Hence, the proposed RC provides a much faster dynamic response compared to the traditional RC. The proposed control strategy is analyzed and design of the RC for the UPQC is presented in detail. The feasibility of the proposed control strategy is verified through simulations.
一种提高UPQC在畸变源和非线性负载条件下性能的重复控制方案
提出了一种针对三相统一电能质量调节器(upqc)在失真源和非线性负载条件下的增强控制策略。该控制器由比例积分控制器和重复控制器(RC)组成,分别在UPQC的串联和并联apf上开发,以补偿(6n±1)(n= 1,2,3…)失真源电压中的谐波电压和非线性负载产生的谐波电流。因此,负载电压和电源电流被补偿为正弦。在本文提出的RC中,延迟时间减少到基本周期的六分之一,大大缩短了传统RC的延迟时间,即一个基本周期。因此,与传统RC相比,所提出的RC提供了更快的动态响应。对所提出的控制策略进行了分析,并详细介绍了UPQC的RC设计。通过仿真验证了所提控制策略的可行性。
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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