基于DSP的有源滤波器控制方法:消除开关纹波

B.N. Singh, A. Chandra, P. Rastgoufard, K. Al-haddad
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引用次数: 5

摘要

本文研究了一种基于DSP的三相并联有源滤波器(AF)的实现,以补偿非线性负载的谐波和无功功率。将具有R-L和R-C负载的三相二极管桥式整流器作为非线性负载。观察到AF系统存在开关纹波问题,这些纹波对供电电流的总谐波失真(THD)有很大的影响。本研究提出了一种新的、无成本的、简单的方法来消除开关波纹。使用PWM电流控制电压源逆变器(CC-VSI)作为AF。在电流控制VSI中,使用两种类型的PWM技术,即无载波(滞后)和基于载波的技术。设计了两种电流控制技术,即直流控制和间接电流控制,以获取AF器件的PWM开关信号。采用直接和间接两种技术对AF的实验室原型模型进行了测试。建立了间接电流控制技术消除开关纹波的能力。给出了AF稳态和瞬态工作条件的实验结果,并进行了详细的讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DSP based control method of active filter: elimination of switching ripples
This paper deals with a DSP based implementation of a three-phase shunt active filter (AF) to compensate harmonics and reactive power of nonlinear loads. A three-phase diode bridge rectifier with R-L and R-C loads is taken as the nonlinear load. It is observed that the AF systems suffer from the problems of switching ripples and these ripples contribute considerably to the total harmonic distortion (THD) in the supply current. This investigation proposes a new, cost free and simple approach for the elimination of switching ripples. A PWM current controlled voltage source inverter (CC-VSI) is used as the AF. In current controlled VSI two types of PWM techniques, namely, carrierless (hysteresis) and carrier based techniques are used. Two types of current control techniques, namely, direct current control and indirect current control are designed to obtain PWM switching signals for the devices of the AF. A laboratory prototype model of an AF is tested with both the direct and indirect techniques. The capability of the indirect current control technique towards the elimination of switching ripples is established. Experimental results for steady state and transient operating conditions of the AF are given and discussed in detail.
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