Power Quality Improvement and Harmonics Compensation Using Hybrid Filter

Muhammad Mudassar
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Abstract

The need for electricity is expanding at an even faster rate in these modern times. In order for the electrical devices to function properly and effectively, a constant supply of high-quality power is required. The most common types of power quality reducing factors include noise, interruptions, variations in voltage and frequency, and so on. These factors all contribute to a decrease in the electrical devices' overall efficiency. Total harmonic distortion (THD) was made worse by the presence of non-linear loads. The existence of harmonics is the primary cause of the problems that lead to the breakdown of insulation, excess heating, and a shortened lifespan for various pieces of equipment. In addition to this, if there is a high THD in the electrical system, it may cause the energy meter to give inaccurate readings. An economic hybrid filter can be employed to reduce the losses caused by harmonics distortion, thereby providing a solution to those issues. This paper provides an in-depth look into the application of this filter for harmonic compensation. By performing simulations with the Simulink tool of MATLAB and validating the results using the experimental setup, it has been determined that using a filter can reduce the total harmonic distortion (THD) of the current by 40.09 percentage points, which will result in better power quality and energy conservation. The IEEE Standard 519-1992 was consulted as a reference when making this determination.
利用混合滤波器改善电能质量及谐波补偿
在现代,对电力的需求正在以更快的速度增长。为了使电气设备正常有效地工作,需要持续提供高质量的电源。最常见的电能质量降低因素包括噪音、中断、电压和频率的变化等等。这些因素都会导致电气设备整体效率的降低。非线性荷载的存在使总谐波畸变(THD)恶化。谐波的存在是导致绝缘破裂、过热和各种设备寿命缩短的问题的主要原因。除此之外,如果在电气系统中存在高THD,则可能导致电能表给出不准确的读数。经济的混合滤波器可以减少谐波失真造成的损失,从而为这些问题提供了解决方案。本文深入探讨了该滤波器在谐波补偿中的应用。利用MATLAB的Simulink工具进行仿真,并利用实验装置对结果进行验证,结果表明,采用滤波器可使电流的总谐波失真(THD)降低40.09个百分点,从而获得更好的电能质量和节能效果。在做出此决定时,参考了IEEE标准519-1992。
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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