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Comparative Study on Combined Series Active and Shunt Passive Power Filter Using Two Different Control Methods

机译:两种不同控制方法组合系列主动和分流无源电力滤波器的比较研究

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This paper presents a comparative study of the combined series active and shunt passive power filter, using instantaneous real active and reactive power (p-q) and instantaneous active and reactive current component (id-iq) method. The p-q method has been proposed as the control method for the combined filter and gives satisfactory performance [2-3] while id-iq method was proven to give better performance for shunt active power filter in harmonic compensation [5]. Two models of a power line with a nonlinear load using p-q and id-iq method are developed using MATLAB-Simulink SimPower System. Models are simulated for three different conditions of supply source; the balanced sinusoidal supply, unbalanced sinusoidal supply and balanced non-sinusoidal supply. The percentage of total harmonic distortion (%THD) of the output current is measured and the waveform is observed. Based on the result, it is verified that the id-iq control method gives a slightly better result for a distorted supply condition. However, both control method has same effectiveness to compensate the harmonic current when the supply is a normal balanced and sinusoidal.
机译:本文介绍了组合的串联的比较研究活性和分流无源滤波器,使用瞬时实际有功功率和无功功率(P-Q)和瞬时有功功率和无功电流分量(ID-IQ)方法。的P-Q的方法已被提议作为用于组合滤波器的控制方法,并给出令人满意的性能[2-3],而ID-iq法被证明,得到用于谐波补偿[5]分流有源滤波器更好的性能。使用P-Q和id-iq法非线性负载的电源线的两款机型均采用MATLAB,Simulink的SimPower系统开发。模型模拟了的供给源以三种不同条件;平衡正弦电源,不平衡正弦电源和平衡非正弦电源。输出电流的总谐波失真(THD%)的百分比被测量,并且观察到的波形。根据这个结果,验证了该ID-IQ控制方法,给出了一个扭曲的供应条件稍好的结果。然而,这两种控制方法具有相同的效果,以补偿高次谐波电流时电源是正常的平衡和正弦的。

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