Compensation characteristics and power rating of a single-phase active filter with frequency limitation function

Hidehito Yoshida, K. Wada, Toshihisa Shimizu
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引用次数: 3

Abstract

Recently, many energy-saving household appliances such as air conditioners, refrigerators, and LED bulbs are being used in residences. Most household appliances use diode rectifiers equipped with smoothing dc capacitors, which cause the passage of a large harmonic current through utility lines. This harmonic current may cause electrical equipment to malfunction or fail. Because the household appliances are connected to the single-phase utility grid, the third-harmonic component is dominant among the harmonic current generated by the appliances. However, the fifth-harmonic component generally is dominant in distortion contained by the utility voltage of power distribution lines. This paper discusses the flow of the third-harmonic current in three-phase three-wire system. As a result, if only the one conventional single-phase active filter is connected to the distribution system, the third-harmonic current may increase in the system. To solve this issue, the authors propose a control strategy of single-phase active filters. Furthermore, the validity of the proposed control strategy is shown by the experiment and simulation results.
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具有限频功能的单相有源滤波器的补偿特性和额定功率
最近,空调、冰箱、LED灯泡等节能型家电开始在住宅中使用。大多数家用电器使用配备平滑直流电容器的二极管整流器,这会使大谐波电流通过公用线路。这种谐波电流可能导致电气设备故障或失效。由于家用电器接入单相电网,在家用电器产生的谐波电流中,三次谐波分量占主导地位。然而,五次谐波分量通常在配电线路的公用电压所含的畸变中占主导地位。本文讨论了三相三线制系统中三次谐波电流的流动。因此,如果在配电系统中只接一个传统的单相有源滤波器,系统中的三次谐波电流可能会增加。为了解决这一问题,作者提出了一种单相有源滤波器的控制策略。实验和仿真结果验证了所提控制策略的有效性。
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