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Neutral-Point Potential Balancing of a Five-Level Active Neutral-Point-Clamped Inverter

机译:五电平有源中性点钳位逆变器的中性点电位平衡

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The five-level active neutral-point (NP)-clamped (ANPC) converter is a newly emerging topology which can overcome the drawbacks of traditional NP-clamped and flying-capacitor multilevel converters. This paper presents a comprehensive theoretical analysis of the NP potential balancing issue and demonstrates that the NP potential can be naturally balanced under ideal and steady conditions. An NP potential balancing method based on zero-sequence voltage injection is presented. By calculating the average NP currents of all key zero-sequence voltages, the most appropriate zero-sequence voltage is selected to generate the demanded NP current, which can also limit the switching frequency of the series-connected insulated-gate bipolar transistors to the fundamental frequency. A three-phase five-level ANPC inverter prototype is built up, and both steady and dynamic experimental results are presented to verify the validity of this method.
机译:五电平有源中性点(NP)钳位(ANPC)转换器是一种新兴的拓扑结构,可以克服传统NP钳位和飞电容多电平转换器的缺点。本文对NP电位平衡问题进行了全面的理论分析,并证明了在理想和稳定条件下NP电位可以自然平衡。提出了一种基于零序电压注入的NP电势平衡方法。通过计算所有关键零序电压的平均NP电流,可以选择最合适的零序电压来生成所需的NP电流,这也可以将串联连接的绝缘栅双极型晶体管的开关频率限制为基波频率。建立了三相五电平ANPC逆变器原型,并给出了稳态和动态实验结果,验证了该方法的有效性。

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