在有源电力滤波器电流控制回路中应用复位积分器的研究

Lidan Zhou, M.M. Khan, G. Yao, F. Ji, D. Xie, Cheng Chen, J. Shu
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引用次数: 1

摘要

电流控制回路是电力有源滤波系统控制结构中的关键部分。在线性控制技术中,就有源滤波器的DSP实现而言,无差拍控制作为一种可行的电流控制技术已被广泛接受。这种对一个样本测量的误差使用高增益的控制技术对测量中的任何误差或噪声都非常敏感,这在电气系统中总是存在的。特别是逆变器或有源滤波器并联时的周期性噪声要求在电流换能器输出端采用高阶滤波器,从而影响系统的动态响应。近年来,一些论文报道了将复位积分器作为滤波器在某些电子应用中的应用结果。本文试图展示复位积分器作为滤波器在有源滤波器电流控制中的可能应用,其中线性控制方法比一般无差拍拍控制具有更好的频率特性和电流响应。仿真和实验验证了采用这些滤波器可以改善有源滤波器中电流环的性能
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On using resetting integrator in current control loop for active power filter
Current control loops is the key element in the control structure of active power filter systems. Among linear control techniques, deadbeat control has widely been accepted as a feasible current control technique as far the DSP implementation of APF is concerned. This control technique that uses high gains on the errors measured at one sample is very sensitive to any error or noise in the measurements, which is always there in electrical systems. Especially, the periodic noise in parallel implementation of an inverter or APF demands a higher order filter at the current transducer output, which affects the system dynamic response. Recently few papers have reported the results about the use of resetting integrators as filter in some electronic applications. This paper is an attempt to show possible application of resetting integrator as filter to current control for APF, where linear control methods have better frequency characteristics and current response than general deadbeat control. Simulation and experiment verify that these filters can be adopted to improve the performances of a current loop in APF
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