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A double-loop current control strategy for Shunt Active Power Filter with LCL filter

机译:带LCL滤波器分流有源电力滤波器的双回路电流控制策略

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Shunt active power filter (SAPF) is suitable to compensate current-type harmonics caused by nonlinear load, but high compensation precision is difficult to be obtained due to very high slew rate of harmonic current, output impendence of voltage source converter (VSC) and control loop phase lag. LCL-filter with high attenuation ratio and small LC parameters is appropriate to be used as output filter considering the mentioned reasons. However, LCL-filter, as a third-order resonant circuit itself, is difficult to be stable. This paper proposes a novel control strategy for shunt active power filter with a LCL output switching filter. It integrates an outer loop of grid-side filter current regulator and an inner control loop of capacitor current feedback, which essentially imitates an active damper or a virtual resistor. Based on this double-loop control scheme, the SAPF can dramatically improve its efficiency and high quality steady-state grid current waveform and fast-dynamic response can be obtained even under the case of serious distorted grid voltage. Analysis and simulation results validate the correctness and feasibility of the proposed control strategy.
机译:分流有源电力滤波器(SAPF)适用于补偿由非线性负载引起的电流式谐波,但由于非常高的谐波电流,电压源转换器(VSC)和控制的输出封闭,难以获得高补偿精度。电压源转换器(VSC)和控制环阶段滞后。考虑到提到的原因,具有高衰减比和小型LC参数的LCL过滤器适合用作输出过滤器。然而,作为三阶谐振电路本身的LCL过滤器难以稳定。本文提出了一种具有LCL输出开关滤波器的分流有源电力滤波器的新型控制策略。它集成了电容器电流反馈的电容器电流反馈的内部控制回路的外环,基本上模仿了有源阻尼器或虚拟电阻。基于该双环控制方案,SAPF可以显着提高其效率,即使在严重扭曲的电网电压的情况下也可以获得高质量的稳态电流波形和快动力响应。分析和仿真结果验证了所提出的控制策略的正确性和可行性。

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