Digital implementation of harmonics reduction of three-phase boost rectifier

A. Eltamaly, A. Alolah
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引用次数: 1

Abstract

The line currents of three-phase diode bridge rectifier suffer from high THD. This THD is higher than IEEE standards. Injection of six harmonic components to the control signal of the boost converter connected to the three-phase diode bridge rectifier reduces the THD of the utility line current. In this paper a digital implementation of injecting six harmonic to the control signal of three-phase boost rectifier is shown. The digital implementation is carried out by using FPGA. In this study a sin-wave and a triangle-wave with six times the fundamental frequency and variable amplitude are digitally generated in the FPGA. Each signal is added to the dc control signal component of boost converter to be compared with digitally generated saw-tooth. The simulation and experimental results show that the THD of the utility line currents depends on the amplitude and phase-shift of the six-order component injected to the control signal of the boost converter and the angle of input three-phase voltage.
三相升压整流器谐波降频的数字化实现
三相二极管桥式整流器的线路电流受到高THD的影响。该THD高于IEEE标准。在与三相二极管桥式整流器相连的升压变换器的控制信号中注入六个谐波分量,降低了公用线路电流的THD。本文给出了一种对三相升压整流器控制信号注入六次谐波的数字实现方法。利用FPGA实现了该系统的数字化实现。在本研究中,在FPGA中数字生成了六倍基频和可变幅度的正弦波和三角波。每个信号加到升压变换器的直流控制信号分量中,与数字生成的锯齿形信号进行比较。仿真和实验结果表明,公用线路电流的THD取决于注入升压变换器控制信号的六阶分量的幅值和相移以及输入三相电压的角度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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