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Fault-Tolerant Multilevel Topology Based on Three-Phase H-Bridge Inverters for Open-End Winding Induction Motor Drives

机译:基于三相H桥逆变器的开放式绕组感应电动机驱动器的容错多级拓扑

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摘要

In this paper, a multilevel inverter based on three-phase H-bridge inverters for an open-end winding induction motor drive is presented and its fault-tolerance capability is investigated. The multilevel topology is obtained using three wye-connected three-phase H-bridge inverters to supply open-end winding induction motors. This topology has the ability to extend the maximum voltage applied to the motor windings up to two times the dc supply voltage of the three-phase inverters. For a given induction motor voltage, the topology allows the use of dc sources with a lower voltage rating. Consequently, faster power semiconductors can be used. This multilevel topology can be directly controlled by modifying known modulation concepts, such as sinusoidal pulse width modulation (PWM). In this study, two sinusoidal PWM modulation techniques will be implemented: the level-shifted carriers (phase disposition) and the phase-shifted modulator. Fault-tolerant operation under an open-switch fault without adding any extra components and without changing the modulation strategy is also proposed, adding fault-tolerant capability to the new topology. Experimental results of this multilevel inverter in normal operation and in fault tolerant mode are presented. The obtained results confirm the fault effectiveness of the proposed multilevel topology.
机译:本文提出了一种基于三相H桥逆变器的多电平逆变器,用于开放式绕组感应电动机驱动器,并研究了其容错能力。多级拓扑结构是使用三个星形连接的三相H桥逆变器为开放式绕组感应电动机提供的。这种拓扑结构可以将施加到电机绕组的最大电压扩展到三相逆变器直流电源电压的两倍。对于给定的感应电动机电压,该拓扑结构允许使用额定电压较低的直流电源。因此,可以使用更快的功率半导体。可通过修改已知的调制概念(例如正弦脉冲宽度调制(PWM))直接控制此多级拓扑。在这项研究中,将实现两种正弦波PWM调制技术:电平移位的载波(相位布置)和相移的调制器。还提出了在不增加任何额外组件且不改变调制策略的情况下,在开路开关故障下的容错操作,从而为新拓扑增加了容错能力。给出了该多电平逆变器在正常操作和容错模式下的实验结果。获得的结果证实了所提出的多级拓扑的故障有效性。

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