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A Hybrid Multilevel Inverter Topology for an Open-End Winding Induction-Motor Drive Using Two-Level Inverters in Series With a Capacitor-Fed H-Bridge Cell

机译:混合多电平逆变器拓扑,用于开端绕组感应电动机驱动器,该驱动器使用与电容器馈送的H桥单元串联的两级逆变器

摘要

In this paper, a new five-level inverter topology for open-end winding induction-motor (IM) drive is proposed. The open-end winding IM is fed from one end with a two-level inverter in series with a capacitor-fed H-bridge cell, while the other end is connected to a conventional two-level inverter. The combined inverter system produces voltage space-vector locations identical to that of a conventional five-level inverter. A total of 2744 space-vector combinations are distributed over 61 space-vector locations in the proposed scheme. With such a high number of switching state redundancies, it is possible to balance the H-bridge capacitor voltages under all operating conditions including overmodulation region. In addition to that, the proposed topology eliminates 18 clamping diodes having different voltage ratings compared with the neutral point clamped inverter. On the other hand, it requires only one capacitor bank per phase, whereas the flying-capacitor scheme for a five-level topology requires more than one capacitor bank per phase. The proposed inverter topology can be operated as a three-level inverter for full modulation range, in case of any switch failure in the capacitor-fed H-bridge cell. This will increase the reliability of the system. The proposed scheme is experimentally verified on a four-pole 5-hp IM drive.
机译:本文提出了一种新的五级逆变器拓扑,用于开放式绕组感应电动机(IM)驱动。开放端绕组IM从一端馈入与电容器馈送H桥单元串联的两级逆变器,而另一端则连接到常规的两级逆变器。组合式逆变器系统产生的电压空间矢量位置与传统的五电平逆变器相同。在所提出的方案中,总共2744个空间矢量组合分布在61个空间矢量位置上。通过如此大量的开关状态冗余,可以在包括过调制区域在内的所有工作条件下平衡H桥电容器的电压。除此之外,与中性点钳位逆变器相比,该拓扑还消除了18个具有不同额定电压的钳位二极管。另一方面,它每相仅需要一个电容器组,而用于五电平拓扑的快速电容器方案则每相需要多个电容器组。如果在电容器供电的H桥单元中发生任何开关故障,则所提出的逆变器拓扑可以用作三电平逆变器以实现整个调制范围。这将增加系统的可靠性。该提议的方案已在四极5 hp IM驱动器上进行了实验验证。

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