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Novel Source Current Detection Control of Active Power Filter with Selective Harmonic Compensation

机译:具有选择性谐波补偿的有源电力滤波器源电流检测新控制

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摘要

In industrial application, the parallel active power filter (PAPF) is used most widely to eliminate the current distortion. It can be classified into two types according different current detection method. One is the load current detection type, and the other is the source current detection type. Load current detection method is an open-loop system, so both time delay and parameter deviation of the PAPF (especially in harmonic detector of PAPF) can cause incorrect compensation and unwanted remaining harmonics in the source current. Source current detection is a closed-loop system, while in traditional source current detection control method, system stability and performance of harmonic elimination is incompatible. In this paper a novel source current detection control of PAPF with selective harmonic compensation is proposed. Implementation of the proposed method in either synchronous or stationary frame is given in this paper. This method can ensure both the excellent performance of PAPF and the system stability. Moreover, this control method is insensitive to time delay and parameter deviation of the PAPF. Finally, simulation and experiment results are presented to demonstrate the conclusions.
机译:在工业应用中,并联有源功率滤波器(PAPF)被广泛用于消除电流失真。根据电流检测方法的不同,可以分为两种类型。一种是负载电流检测类型,另一种是源电流检测类型。负载电流检测方法是一种开环系统,因此,PAPF的时间延迟和参数偏差(尤其是在PAPF的谐波检测器中)都可能导致错误的补偿以及源电流中多余的残留谐波。源电流检测是一个闭环系统,而在传统的源电流检测控制方法中,系统稳定性和谐波消除性能不兼容。提出了一种具有选择性谐波补偿的新型PAPF电源电流检测控制方法。给出了该方法在同步帧还是静止帧中的实现。这种方法既可以保证PAPF的优异性能,又可以保证系统的稳定性。而且,该控制方法对PAPF的时间延迟和参数偏差不敏感。最后,通过仿真和实验结果验证了结论。

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