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An impedance-match design scheme for inductively active power filter in distribution networks

机译:配电网电感有源功率滤波器的阻抗匹配设计方案

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This article proposes an improved inductively active power filter (IAPF) to compensate the wide-bandwidth harmonics from nonlinear loads and eliminate the switching harmonics' adverse effect for its own inverter. At first, the topology that consists of an inductively filtering converter transformer (IFCT) and a shunt active power filter (SAPF) is proposed. The system equivalent circuit, including fundamental and harmonic impedances of IFCT and SAPF, is established to reveal the filtering mechanism. Besides, the mathematical model, control strategy and detailed output impedance of SAPF are described, respectively. Further, according to the equivalent circuit, comprehensive influences of IFCT equivalent impedance and SAPF out impedance on system compensation accuracy, perturbation rejection ability and stability are theoretically analyzed, the impedance-match operation constraints between two impedances are revealed. By proper IFCT design, a simple but practical method to reduce the interaction between IFCT and SAPF is proposed. Comparative simulation cases in 10 kV distribution networks and the proper experiment in 380 V condition are performed. The corresponding results validate the effectiveness and correctness of the proposed IAPF.
机译:本文提出了一种改进的电感有源功率滤波器(IAPF),以补偿来自非线性负载的宽带谐波并消除开关谐波对其自身逆变器的不利影响。首先,提出了一种由电感滤波变换器变压器(IFCT)和并联有源功率滤波器(SAPF)组成的拓扑。建立了包括IFCT和SAPF的基波和谐波阻抗在内的系统等效电路,以揭示滤波机制。此外,分别描述了SAPF的数学模型,控制策略和详细的输出阻抗。此外,根据等效电路,从理论上分析了IFCT等效阻抗和SAPF out阻抗对系统补偿精度,抗扰能力和稳定性的综合影响,揭示了两个阻抗之间的阻抗匹配操作约束。通过适当的IFCT设计,提出了一种减少IFCT和SAPF之间相互作用的简单而实用的方法。在10 kV配电网中进行了比较仿真案例,并在380 V条件下进行了适当的实验。相应的结果验证了提议的IAPF的有效性和正确性。

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