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A Single-Phase Five-Level Inverter Topology With Switch Fault-Tolerance Capabilities

机译:具有开关容错功能的单相五电平逆变器拓扑

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摘要

Low reliability is one of the major concerns of multilevel inverter due to the requirement of a large number of semiconductor devices as compared to two-level inverters. Thus, in this paper, a novel topology of multilevel inverter is proposed that can tolerate both open and short-circuit faults on its switches. The proposed topology also reduces dc sources and capacitors as compared to the conventional and recently proposed fault-tolerant topologies. Two types of solutions are provided in order to make the proposed topology fault tolerant; first provides a partial solution to fault, while the second provides a complete solution to fault. In addition, a novel switching strategy is proposed to reduce the amount of capacitor voltage ripples under normal and postfault conditions. Also, the proposed switching scheme offers an additional advantage of self-voltage balancing of its capacitor voltage both under normal as well as postfault conditions. To validate the proposed concepts, simulation and experimental analysis are carried out and different results are presented to show the viability of the proposed topology under normal operation, during fault and postfault conditions.
机译:与两级逆变器相比,由于需要大量的半导体器件,因此低可靠性是多级逆变器的主要问题之一。因此,在本文中,提出了一种新型的多电平逆变器拓扑结构,它可以容忍其开关的开路和短路故障。与传统的和最近提出的容错拓扑相比,提出的拓扑还减少了直流电源和电容器。为了使所提出的拓扑容错,提供了两种解决方案。第一个提供故障的部分解决方案,而第二个提供故障的完整解决方案。此外,提出了一种新颖的开关策略来减少正常和故障后条件下的电容器电压纹波。同样,所提出的开关方案还提供了在正常以及故障后条件下其电容器电压的自电压平衡的附加优点。为了验证所提出的概念,进行了仿真和实验分析,并给出了不同的结果,以表明所提出的拓扑在正常操作,故障和故障后状况下的可行性。

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