Improving the performance of an active power filter as part of a multifunctional high power electrical vehicle charging station

Yongbin Chu, Shuo Wang, R. Crosier
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引用次数: 3

Abstract

This paper first analyzes low switching frequency discrete-time control techniques of an active power filter (APF) of a multifunctional high power electrical vehicle charging station. Based on the analysis, two major factors which greatly degrade the performance of the APF under this control technique, are identified. The first one is that there is always a delay caused by performing digital control algorithm. The second one is that the voltage at the point of common coupling (PCC) is changing during one sampling period. Then, techniques to deal with these problems and improve the performance of the cascaded multilevel inverter based APF are given. These techniques use data collected in previous line cycle to generate reference current and voltage for the APF. Finally, simulation results in Matlab/Simulink are provided to validate these techniques.
改进多功能大功率电动汽车充电站中有源电力滤波器的性能
本文首先分析了多功能大功率电动汽车充电站有源滤波器(APF)的低开关频率离散控制技术。在此基础上,找出了影响该控制技术下有源滤波器性能的两个主要因素。首先,由于数字控制算法的执行,总有延迟。第二个是在一个采样周期内,共耦合点(PCC)的电压是变化的。然后,给出了解决这些问题的方法和提高基于有源滤波器的级联多电平逆变器性能的方法。这些技术使用在前一个线路周期中收集的数据为APF生成参考电流和电压。最后,给出了Matlab/Simulink中的仿真结果来验证这些技术。
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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