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Impact of Background Voltage Harmonic Mitigation Techniques on Coupled Frequencies in VSC-Based EV Fast Charging

机译:背景电压谐波缓解技术对基于VSC的EV快速充电耦合频率的影响

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In active front end-based EV fast charging stations, background voltage harmonics produce current not only at the frequencies of the distorted voltage, but also at other coupled frequencies. Various mitigation techniques, such as increasing inner control loop gain, grid voltage feedforward, and selective harmonic compensation, have been adopted in industry to reduce the emissions originating from distorted background voltage. However, although these techniques are effective in suppressing the current at the harmonic orders present in the background voltage, they deteriorate the emission at coupled frequencies. This paper provides the theoretical explanation of this phenomenon, which is verified by simulation of a two-level active front end in PSCAD/EMTDC. This paper also discusses the proper treatment of current emission due to background voltage harmonics.
机译:在基于主动前端的EV快速充电站中,背景电压谐波不仅在扭曲电压的频率下产生电流,而且在其他耦合频率下产生电流。在工业中采用各种缓解技术,例如增加内部控制回路增益,电网电压前馈和选择性谐波补偿,以减少源于扭曲的背景电压的排放。然而,尽管这些技术有效地抑制了在背景电压中存在的谐波终端时的电流,但它们在耦合频率下劣化。本文提供了这种现象的理论解释,其通过模拟PSCAD / EMTDC中的双层有源前端进行验证。本文还讨论了由于背景电压谐波引起的电流发射的适当处理。

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