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A Current-Reference-Based Selective Harmonic Current Mitigation PWM Technique to Improve the Performance of Cascaded H-Bridge Multilevel Active Rectifiers

机译:基于电流参考的选择性谐波电流抑制PWM技术,可提高级联H桥多电平有源整流器的性能

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摘要

In this paper, a selective harmonic current mitigation pulsewidth modulation (SHCM-PWM) technique with low switching frequencies is proposed for grid-connected cascaded H-bridge multilevel rectifiers to fully meet harmonic requirements within extended harmonic spectrum. In the proposed technique, instead of using the voltage references to calculate switching angles for the rectifier as in conventional selective harmonic elimination-PWM (SHE-PWM) or selective harmonic mitigation-PWM (SHM-PWM), current references are used to compensate the current harmonics due to both grid voltage harmonics and rectifier input voltage harmonics so as to meet the current harmonic requirements and total demand distortion within the whole harmonic spectrum. Furthermore, the techniques to design the critical parameters including switching frequency, the highest harmonic order that can be mitigated using the proposed current-reference-based technique, and the coupling inductance that can attenuate the current harmonic orders above the highest order are investigated. With the same switching frequency, the proposed SHCM-PWM technique uses smaller coupling inductance to meet higher orders of current harmonic requirements than the conventional SHE-PWM technique. Finally, simulations and experiments were conducted to validate the proposed technique.
机译:本文提出了一种低开关频率的选择性谐波电流缓解脉冲宽度调制(SHCM-PWM)技术,用于并网级联H桥多电平整流器,以完全满足扩展谐波频谱内的谐波要求。在所提出的技术中,与传统的选择性谐波消除-PWM(SHE-PWM)或选择性谐波抑制-PWM(SHM-PWM)一样,不使用电压参考来计算整流器的开关角度,而是使用电流参考来补偿由电网电压谐波和整流器输入电压谐波引起的电流谐波,以满足电流谐波要求和整个谐波频谱内的总需求失真。此外,研究了设计关键参数的技术,这些技术包括开关频率,使用建议的基于电流参考的技术可以缓解的最高谐波阶数以及可以将电流谐波阶数降低到最高阶以上的耦合电感。在相同的开关频率下,与传统的SHE-PWM技术相比,拟议的SHCM-PWM技术使用较小的耦合电感来满足更高阶的电流谐波要求。最后,进行仿真和实验以验证所提出的技术。

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