Performance enhancement of shunt active power filter using soft computing techniques

Annu Govind, V. K. Tayal, Prakash Kumar
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引用次数: 1

Abstract

Nowadays, active power filter (APF) is the most popular device for harmonic compensation. This paper presents the soft computing techniques for compensation of currents harmonics using a shunt active power filter (SAPF). The method includes a 3-phase supply system with a current-controlled voltage source converter (CC-VSC) having an input coupling inductor and output tank capacitor for a self-supported DC bus. The performance of the active power filter can be enhanced by using soft computing techniques such as artificial neural network (ANN) controller and gravitational search algorithm (GSA) for generating control signals of the SAPF. The current reference is calculated to compensate source current THD with synchronous reference frame (SRF) technique with proportional integrator (PI) controller. From the result, it is evident that both the soft computing techniques reduce the computational time & fast convergence which improves the filter performance during the transient period and makes it self-tuned. The proposed structure is simulated using MATLAB/Simulink and subsequently experimentally verified. The presentation of the system is originated to be suitable for numerous features of power quality enhancement structure.
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用软计算技术增强并联型有源电力滤波器的性能
有源电力滤波器(APF)是目前最常用的谐波补偿装置。本文介绍了用并联有源电力滤波器(SAPF)进行电流谐波补偿的软计算技术。该方法包括具有具有用于自支撑直流母线的输入耦合电感和输出槽电容器的电流控制电压源转换器(CC-VSC)的三相供电系统。利用人工神经网络(ANN)控制器和重力搜索算法(GSA)等软计算技术生成有源电力滤波器的控制信号,可以提高有源电力滤波器的性能。采用同步参考帧(SRF)技术和比例积分器(PI)控制器计算基准电流,补偿源电流THD。结果表明,这两种软计算技术都减少了计算时间和快速收敛,从而提高了滤波器在瞬态期间的性能并使其具有自调谐能力。利用MATLAB/Simulink对所提出的结构进行了仿真,并进行了实验验证。该系统的提出是为了适应电能质量增强结构的众多特点。
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