A Novel Approach for Design and Analysis of Voltage-Controlled DSTATCOM for Power Quality Enhancement

Syed Ruman, S. Hameed
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Abstract

The Power quality fluctuations of the distributed power system show a serious impact on the robust and sustainable operation of the distributed power system. These power quality fluctuations may be caused due to several reasons like leakage, faults and ageing of the lines. This project proposes a new algorithm to generate reference voltage for a controlled mode distribution static compensator (DSTATCOM) operating in voltage-control mode. The proposed scheme exhibits several advantages compared to traditional voltage-controlled DSTATCOM where the reference voltage is arbitrarily taken as 1.0 p.u. The proposed scheme ensures that unity power factor (UPF) is achieved, while regulating the voltage at the load terminal, during load change, which is not possible in the traditional method. Also, the compensator injects lower currents and, therefore, reduces losses in the feeder and voltage-source inverter. This scheme allows DSTATCOM to tackle power-quality issues by providing power factor correction, harmonic elimination, load balancing, and voltage regulation based on the load requirement.  Simulation and experimental results are presented to demonstrate the efficacy of the proposed algorithm.
一种提高电压控制DSTATCOM电能质量的设计与分析新方法
分布式电力系统的电能质量波动严重影响着分布式电力系统的稳健、可持续运行。这些电能质量波动可能是由于泄漏、故障和线路老化等原因造成的。本课题提出了一种新的算法来产生电压控制模式下的可控模式分布静态补偿器(DSTATCOM)的参考电压。与传统电压控制DSTATCOM的基准电压任意取为1.0 p.u相比,该方案具有几个优点。该方案确保了在负载变化过程中实现统一的功率因数(UPF),同时调节负载端电压,这是传统方法所无法实现的。此外,补偿器注入较低的电流,因此,减少了馈线和电压源逆变器的损耗。该方案允许DSTATCOM通过提供功率因数校正、谐波消除、负载平衡和基于负载要求的电压调节来解决电能质量问题。仿真和实验结果验证了该算法的有效性。
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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