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Comparative Performance of Wiener Filter and Adaptive Least Mean Square-Based Control for Power Quality Improvement

机译:Wiener滤波器和自适应最小均方控制在改善电能质量方面的比较性能

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摘要

This paper presents a three-phase shunt active power filter (SAPF) for mitigating power quality problems at the distribution level. Power quality problems such as harmonics, reactive power, and unbalancing in the loads are mitigated for both unity power factor and voltage regulation modes. A three-phase voltage-source converter (VSC) is used as an SAPF for performing all these functions. The linear optimum discrete time filtering technique namely Wiener filtering-based control algorithm is developed for the extraction of reference supply currents from distorted load currents. The performance of Wiener filter is compared with least mean square (LMS) adaptive filter-based control algorithm. Experimental validation of proposed control algorithm has been performed on a prototype developed in the laboratory. The filtering action of SAPF is able to achieve the total harmonic distortion (THD) of supply current within the limit specified by an IEEE-519 standard.
机译:本文提出了一种三相并联有源功率滤波器(SAPF),用于缓解配电级的电能质量问题。对于单位功率因数和电压调节模式,都可以缓解诸如谐波,无功功率和负载不平衡之类的电能质量问题。三相电压源转换器(VSC)用作执行所有这些功能的SAPF。开发了线性最佳离散时间滤波技术,即基于维纳滤波的控制算法,用于从失真的负载电流中提取参考电源电流。将维纳滤波器的性能与基于最小均方(LMS)自适应滤波器的控制算法进行比较。建议的控制算法的实验验证已在实验室开发的原型上进行。 SAPF的滤波功能能够在IEEE-519标准指定的限制内实现电源电流的总谐波失真(THD)。

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