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Harmonic mitigation improvement with a new parallel topology for shunt active power filters

机译:利用并联并联有源滤波器的新型并联拓扑改善谐波抑制能力

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This paper describes the control and parallel operation of two Active Power Filters. The filters are coupled in a combined topology in which one filter is connected in a feedback loop and the other is in a feedforward loop for harmonic compensation. Thus, both active power filters bring their own characteristic advantages i.e. the feedback filter improves the steady-state performance of the harmonic mitigation and the feedforward filter improves the stability and the dynamics. Another characteristic of the proposed topology is the cooperation of both filters either as load-sharing or frequency-sharing. The evaluation of the proposed topology concludes that this approach is very practical for achieving both low and high order harmonic compensation and stable grid operation. This is supported by measurement results on a 15 kVA laboratory setup, indicating a reduction in Total Harmonic Current Distortion from existing 30 % to less than 2 % in an adjustable speed drive application.
机译:本文介绍了两个有源功率滤波器的控制和并联操作。滤波器以组合拓扑结构耦合,其中一个滤波器连接在反馈环路中,另一个滤波器连接在前馈环路中,以进行谐波补偿。因此,两个有源功率滤波器都具有其自身的特性优势,即反馈滤波器提高了谐波抑制的稳态性能,前馈滤波器提高了稳定性和动态性能。所提出的拓扑的另一个特征是两个滤波器的协作,无论是负载共享还是频率共享。对提出的拓扑的评估得出结论,该方法对于实现低阶和高阶谐波补偿以及稳定的电网运行非常实用。这通过15 kVA实验室设置的测量结果得到支持,表明在调速驱动应用中,总谐波电流失真从现有的30%降低到了2%以下。

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