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An Independent Control Approach for Three-Phase Four-Wire Shunt Active Filter Based on Three H-Bridge Topology under Unbalanced Load Conditions

机译:三相四线分流式有源滤波器的独立控制方法,基于三相四桥拓扑结构在不平衡负载条件下

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This paper presents a simple scheme to compensate the load reactive power, current harmonics, load unbalance, and neutral current in a three-phase four-wire (3P4W) system. The shunt active power filter (APF) consists of three H-bridge single-phase voltage source inverters (VSI) supported by a common DC bus voltage. Thus each phase of 3P4W system can be viewed and controlled as independent phase and/or in conjunction with other phases, and hence it improves the overall system controllability. The 3H-bridge topology also results in the reduction of required DC bus voltage by a maximum factor of 3~(1/2), which indeed helps to reduce the inverter rating and thus promises an effective topology for high power applications. In this paper, the single-phase p-q theory based controller is realized to achieve - i) proposed independent phase control approach and ii) load unbalance compensation approach. The 3P4W shunt APF system with both the approaches is first simulated by using MATLAB/Simulink, and then developed, implemented, and tested in the laboratory using the digital signal processor (DSP) DS1104 of dSPACE. The developed shunt APF system is able to reduce the current total harmonics distortion (THD) up to 2.1percent, and the current unbalance factor from 40percent to 4.76percent.
机译:本文提出了一种简单的方案,可以在三相四线(3P4W)系统中补偿负载无功功率,电流谐波,负载不平衡和中性电流。分流器有源电力滤波器(APF)由三个H桥单相电压源逆变器(VSI)组成,由公共直流总线电压支持。因此,可以将每个阶段的3P4W系统视为独立的相位和/或与其他相结合,因此它提高了整体系统可控性。 3H-Bridge拓扑还导致最大系数为3〜(1/2)的所需直流母线电压的降低,这确实有助于减少逆变器额定值,从而应对高功率应用的有效拓扑。在本文中,实现了单相P-Q理论的控制器实现 - I)提出的独立相控制方法和II)负载不平衡补偿方法。通过使用MATLAB / SIMULINK,首先模拟具有这两个方法的3P4W分流APF系统,然后使用DSPACE的数字信号处理器(DSP)DS1104在实验室中开发,实施和测试和测试。开发的分流APF系统能够将当前的总谐波失真(THD)降低至2.1平方,并且电流不平衡因子从40%到4.76%。

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