Improved active-neutral-point-clamped (I-ANPC) multilevel converter: Fundamental circuit topology, innovative modulation technique, and experimental validation

V. Dargahi, K. Corzine, J. Enslin, José R. Rodríguez, F. Blaabjerg
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引用次数: 7

Abstract

For medium-voltage (MV) high-power industrial applications including HVDC and variable-speed motor drives, multilevel converters are deemed predominant topology. One of the promising derived-topologies from neutral-point-clamped (NPC) configuration is active NPC (ANPC) inverter that offers improved characteristics. This paper proposes an improved ANPC (I-ANPC) converter controlled with an innovative logic-equation-based modulation method. The I-ANPC converter phase leg is realized by the cascaded connection of the single ANPC converter and one H-bridge cell. The H-bridge converter is formed by one flying-capacitor (FC) and four switches such as the insulated-gate bipolar transistors (IGBTs). The I-ANPC converter has considerable advantages over the classic multilevel inverters that makes it a preferable topology for MV applications. The substantial reduction in the number of cells in comparison with classic ANPC converter along with a drastic decrease in the total voltage rating and the stored energy of the capacitors are the main advantages offered by the I-ANPC multilevel converter over the FC-based inverters. This study explores the fundamental circuit of the proposed I-ANPC multilevel and its derived innovative logic-equation-based modulation technique, and provides an exhaustive comparison with FC-based classic converters. The simulation and experimental results are presented to validate the proposed I-ANPC topology and its logic-equation-based control strategy.
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改进有源中性点箝位(I-ANPC)多电平变换器:基本电路拓扑、创新调制技术和实验验证
对于中压(MV)大功率工业应用,包括高压直流和变速电机驱动,多电平变换器被认为是主要的拓扑结构。中性点箝位(NPC)配置的一个有前途的衍生拓扑是有源NPC (ANPC)逆变器,它提供了改进的特性。本文提出了一种改进的ANPC (I-ANPC)变换器,采用一种创新的基于逻辑方程的调制方法进行控制。I-ANPC变换器的相位支路是由单个ANPC变换器和一个h桥单元级联实现的。h桥变换器由一个飞行电容器(FC)和四个开关(如绝缘栅双极晶体管(igbt))组成。与经典的多电平逆变器相比,I-ANPC变换器具有相当大的优势,使其成为MV应用的首选拓扑。与经典ANPC变换器相比,电池数量的大幅减少以及总额定电压和电容器存储能量的急剧下降是I-ANPC多电平变换器比基于fc的变换器提供的主要优势。本研究探讨了所提出的I-ANPC多电平的基本电路及其衍生的创新的基于逻辑方程的调制技术,并与基于fc的经典变换器进行了详尽的比较。仿真和实验结果验证了所提出的I-ANPC拓扑结构及其基于逻辑方程的控制策略。
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