New control scheme for a dynamic voltage restorer based on selective harmonic injection technique with repetitive controller

P. Tapre, Mohan P. Thakre, Ramesh Pawase, Jaywant S. Thorat, Dipak J. Dahigaonkar, Rahul G. Mapari, S. Kadlag, S. Khule
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Abstract

Repetitive controller and selective harmonic injection technique (SHI) in medium and low voltage distribution networks improve dynamic voltage restorer (DVR) DC bus voltages as well as nullify power quality (PQ) problems. DVRs use sinusoidal pulse width modulation (SPWM) firing control, but DC bus use seems to be limited, affecting density, cost, and power packaging. By adding 1/6th of the 3rd harmonic waveform to the basic waveform, SPWM yields the developed model. According to the findings, 15% of DC bus usage improves and produces high voltage AC. Nevertheless, just control systems perturb PQ. The proposed controller uses feed forward and feedback to enhance transient response and justify stable zero error. 3rd third harmonic injection pulse width modulation (THIPWM) improves total harmonic distortion (THD) in the proposed scheme. Power system computer aided design (PSCAD) simulation produced high accuracy for THIPWM and repetitive controllers.
基于选择性谐波注入技术和重复控制器的动态电压恢复器新控制方案
中低压配电网络中的重复控制器和选择性谐波注入技术(SHI)可改善动态电压恢复器(DVR)的直流母线电压,并消除电能质量(PQ)问题。DVR 使用正弦脉宽调制 (SPWM) 点火控制,但直流母线的使用似乎受到限制,影响了密度、成本和功率封装。通过在基本波形中加入 1/6 的 3 次谐波波形,SPWM 产生了所开发的模型。根据研究结果,15% 的直流母线使用率得到改善,并产生高压交流电。然而,仅仅控制系统会扰动 PQ。建议的控制器使用前馈和反馈来增强瞬态响应,并证明零误差是稳定的。三次谐波注入脉宽调制(THIPWM)改善了拟议方案中的总谐波失真(THD)。电力系统计算机辅助设计 (PSCAD) 仿真为 THIPWM 和重复控制器提供了高精度。
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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