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Performance improvement of shunt active power filter by a new wavelet-based low-pass filter: Theory and implementation

机译:基于小波的低通滤波器的分流有源电力滤波器的性能改进:理论与实现

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摘要

In this paper, a wavelet-based low-pass filter (WBLPF) is proposed to improve the direct current (DC) component separation speed. To this end, three different methods are studied to implement discrete wavelet transform, and then they are compared with each other in term of transient response time, accuracy and computational cost. Afterwards, the conventional low-pass filter is replaced by the new WBLPF in the p-q method. This replacement increases the speed of DC component separation, and consequently the performance of the shunt active power filter is improved. To verify and examine the proposed method, a power system is simulated in MATLAB software and a prototype is implemented in the laboratory. The simulation and experimental results confirm the superiority of the proposed method.
机译:本文提出了一种基于小波的低通滤波器(WBLPF)以改善直流(DC)分离速度。 为此,研究了三种不同的方法来实现离散小波变换,然后在瞬态响应时间,准确度和计算成本中彼此进行比较。 之后,传统的低通滤波器由P-Q方法中的新WBLPF替换。 这种替换增加了DC分量分离的速度,因此改善了分流有源电力滤波器的性能。 为了验证和检查所提出的方法,在MATLAB软件中模拟电力系统,在实验室中实现了原型。 模拟和实验结果证实了所提出的方法的优越性。

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