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A Fault-Tolerant Five-Level Inverter Topology With Reduced Component Count for OEIM Drives

机译:具有减少组件计数的容错五级逆变器拓扑,用于OEIM驱动器

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摘要

This article proposes a fault-tolerant five-level inverter scheme for open-end induction motor (OEIM) drive application using a single dc link. The drive is fed with a primary inverter (a two-level inverter cascaded with a capacitor-fed H-bridge inverter) from one end and a secondary inverter (capacitor-fed two-level inverter) from the other end. The ratio of the dc-link voltage to the nominal capacitor voltage in the H-bridge and the secondary two-level inverter is maintained at 4:2:1. The capacitor balancing in the proposed scheme is achieved by space-vector (SV) redundancy. The proposed scheme gives five-level inverter operation with less number of components compared with other existing inverter topologies. Furthermore, the scheme provides fault-tolerant capability against a failure of the power switches in the H-bridges and the secondary two-level inverter. The experimental results in steady and transient states are presented. Also, the inverter operation during fault is provided to validate the effectiveness of the proposed scheme.
机译:本文提出了一种使用单个直流链路的开终感应电机(OEIM)驱动应用的容错五级逆变器方案。通过从一端和二级逆变器(电容器供给的双电平逆变器级联的双电平逆变器级联,双电平逆变器从另一端送入驱动器。将DC-Link电压与H形桥中标称电容器电压的比率保持在4:2:1中的标称电容器电压。所提出的方案中的电容器平衡是通过空间矢量(SV)冗余实现的。该方案提供了与其他现有逆变器拓扑相比少量组件的五层逆变器操作。此外,该方案可根据H桥和次级两级逆变器中的功率开关的故障提供容错能力。提出了稳定和瞬态状态的实验结果。此外,提供了故障期间的逆变器操作以验证所提出的方案的有效性。

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