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Harmonic Identification Methods Based on Moving Average Filters for Active Power Filters

机译:基于移动平均滤波器的谐波识别方法

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Harmonic detection is very important in the control of Active Power Filters (APFs). This paper presents a technique for harmonic identification, based on moving average filters (MVAs) and heterodyning, very suitable for digital implementation. The approach of fundamental component identification is contributed both for single-phase and three-phase voltage/current systems. Selective harmonic identification is also feasible. Due to the rapid step-response, good harmonic/noise cancellation of MVAs, and good frequency adaptation of the proposed algorithms, they have a very good performance compared with other alternatives. Experimental results of digital implementation in a rapid prototyping platform (dSpace DS1103), including an APF prototype are contributed proving the theoretical approaches. Details and experimental results of FPGA implementation, a clear trend in the field of digital control, are also contributed.
机译:谐波检测对于控制有源电力滤波器(APFS)非常重要。本文提出了一种基于移动平均滤波器(MVA)和异差的谐波识别技术,非常适合数字实现。基本组件识别的方法对于单相和三相电压/电流系统贡献。选择性谐波识别也是可行的。由于阶跃响应的快速响应,良好的谐波/噪声消除MVA,以及所提出的算法的良好频率调整,与其他替代方案相比,它们具有非常好的性能。快速原型平台(DSPACE DS1103)中的数字实现的实验结果,包括APF原型是促进理论方法的贡献。 FPGA实施的细节和实验结果,也是数字控制领域的明显趋势,也有所贡献。

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