Prominence of Filtering Techniques for Harmonics Mitigation in Advanced Power Electronics Systems

M. Sadiq, Dr. Nusrat Husain, Fawad Shaukat, Ashraf Yahya, Z. Arfeen, Osama Mehboob, Huzaifa Altaf
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Abstract

With the advancement in technology, non-linear loads, continue to increase, and the enigma of harmonics is getting more and more serious. The huge addition of electronic loads in power systems has formed the problem of harmonic generation that has resulted in many associated drawbacks. This paper aims to analyze the harmonics in advanced power electronics-based systems and describes a solution to mitigate them through two distinguished filtering techniques. A rigorous analysis is done concerning the generation of harmonic distortion through different types of loads and harmonic mitigation by employing passive and active power filters. The active power (adaptive) filtering method mitigates all sorts of undesirable frequency components using artificial intelligence (AI) based algorithms by calculating the weight of the fundamental component and generating a harmonics replica to subtract it from the original periodic wave. The simulations that were done show that the indicated techniques can mitigate undesirable harmonics and can lower the total harmonic distortion (THD) effectively according to the statutory limit of the IEEE 519-2014 standard, thus lowering the associated drawbacks of harmonic generation in advanced power electronics systems.
滤波技术在先进电力电子系统谐波抑制中的突出作用
随着技术的进步,非线性负荷不断增加,谐波之谜也越来越严重。电力系统中电子负荷的大量增加形成了谐波产生的问题,并导致了许多相关的弊端。本文旨在分析先进电力电子系统中的谐波,并描述了通过两种不同的滤波技术来减轻谐波的解决方案。对不同类型负载引起的谐波畸变以及采用无源滤波器和有源滤波器的谐波抑制进行了严格的分析。有功功率(自适应)滤波方法采用基于人工智能(AI)的算法,通过计算基波分量的权重并产生谐波副本以从原始周期波中减去它,从而减轻了各种不良频率分量。仿真结果表明,所提出的技术能够有效地抑制谐波,降低总谐波失真(THD),达到IEEE 519-2014标准的法定限制,从而降低先进电力电子系统中谐波产生的相关缺陷。
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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