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An integrated learning control method for PWM-VSI based hybrid filter to dampen harmonic resonance in industrial power system

机译:基于PWM-VSI的混合滤波器抑制工业电力系统谐波谐振的集成学习控制方法

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The operation of voltage source inverter (VSI) based active filtering technique can be viewed as compensation for the equivalent harmonic voltage source according to Thevnin theorem. The paper proposes an integrated current control method for PWM-VSI based hybrid filter, which is a learning control method with incorporation of boost converter technique, to produce the control voltage of PWM inverter. During every learning period, the controller views the PWM-VSI as a boost converter to shape the line current with the achievement of almost unity power factor in the harmonic domain. The repetitive operation of learning control is used to minimize the steady error caused by uncertainties of dynamics of boost converter, the passive filters connected to power system and the detection of line harmonic current. A PWM-VSI based hybrid active filter system consisting of 11th and 13th tuned L-C passive filters with 12-pulse thyristor rectifier is examined. The simulation and experimental results show the viability and effectiveness of the proposed controller.
机译:根据Thevnin定理,基于电压源逆变器(VSI)的有源滤波技术的操作可以视为对等效谐波电压源的补偿。提出了一种基于PWM-VSI的混合滤波器的集成电流控制方法,该方法是一种结合了升压转换器技术的学习控制方法,以产生PWM逆变器的控制电压。在每个学习周期中,控制器都将PWM-VSI视为升压转换器,以对线路电流进行整形,从而在谐波域内实现几乎统一的功率因数。学习控制的重复操作用于最大程度地减小由升压转换器的动力学不确定性,与电源系统相连的无源滤波器以及线路谐波电流的检测所引起的稳态误差。考察了基于PWM-VSI的混合有源滤波器系统,该系统由带有12脉冲晶闸管整流器的第11和第13调谐L-C无源滤波器组成。仿真和实验结果表明了该控制器的可行性和有效性。

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