A hysteretic current controller for active power filter with constant frequency

Wenjin Dai, Baofu Wang, Hua Yang
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引用次数: 11

Abstract

In accordance with the advantage of conventional hysteretic current control method, this paper advances a novel control method for active power filter (APF). In conventional hysteretic current control, the hysteretic band (HB) is fixed and actual compensating current is limited in a fixed hysteretic band. When the voltage source inverter (VSI) works in high-frequency state, as the switching frequency changes the problems such as increasing switching losses and audible noise will appear. In response to this problem, the constant frequency hysteretic current control method based on variable hysteretic band is advanced in this paper. Firstly, the connection between hysteretic band and switching frequency must be found correctly. Then, the variable hysteretic band current controller is designed according to the connection. Finally, the Matlab simulation results show that the switching frequency of VSI is held nearly constant and the proposed controller can track reference current well. The problems of increasing switching losses and audible noise which happened in high-frequency state can be resolved in conventional hysteretic current control.
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恒频有源电力滤波器的滞后电流控制器
针对传统滞回电流控制方法的优点,提出了一种新的有源电力滤波器控制方法。在传统的滞回电流控制中,滞回带是固定的,实际补偿电流被限制在一个固定的滞回带内。当电压源逆变器(VSI)工作在高频状态时,随着开关频率的变化,会出现开关损耗增大和可听噪声等问题。针对这一问题,本文提出了基于变滞回带的恒频滞流控制方法。首先,必须正确地找到滞回带与开关频率之间的关系。然后,根据连接设计了可变迟滞带电流控制器。最后,Matlab仿真结果表明,该控制器几乎保持了VSI的开关频率不变,并能很好地跟踪参考电流。传统的迟滞电流控制可以解决高频状态下开关损耗增大和可听噪声的问题。
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