Harmonic Current Compensation and Resonance Damping Using Shunt Active Power Filter With ADALINE Harmonic Extraction Technique

MF Mohd Noordin, N. A. Rahman
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Abstract

Nonlinear loads in power distribution systems will cause harmonic distortion to the source current waveform. Additionally, shunt capacitors will resonate the amplitude of the distorted source current at the harmonic resonant frequency. As a result, both components will deteriorate the power quality of the source current by distorting its waveform and thus increasing its Total Harmonic Distortion (THD) value. This paper investigates the effect of nonlinear load and shunt capacitor on the source current waveform and studies the extraction algorithms for fundamental harmonic current and resonance current references based on Adaptive Linear Neuron (ADALINE) extraction techniques. Subsequently, a combined control algorithm is developed for a single-phase Shunt Active Power Filter (SAPF) to perform harmonic compensation and resonance damping. From the simulation results, the SAPF compensated both harmonic current and resonance current successfully.
采用ADALINE谐波提取技术的并联有源电力滤波器谐波电流补偿与谐振阻尼
配电系统中的非线性负荷会对源电流波形产生谐波畸变。此外,并联电容器将在谐波谐振频率处与失真源电流的幅值共振。因此,这两种元件都会通过扭曲源电流的波形,从而增加源电流的总谐波失真(THD)值,从而恶化源电流的电能质量。研究了非线性负载和并联电容对源电流波形的影响,研究了基于自适应线性神经元(ADALINE)提取技术的基次谐波电流和谐振电流参考点提取算法。随后,对单相并联有源电力滤波器(SAPF)进行了谐波补偿和谐振阻尼的组合控制算法。仿真结果表明,该滤波器成功地补偿了谐波电流和谐振电流。
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