减少开关数的改进型非对称MLI拓扑容错

N. Muraly, P. Ajay-D-Vimal Raj, N. Subramaniam
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引用次数: 0

摘要

本研究工作的目标是利用非对称减少开关计数(ARSC)实现多电平逆变器(MLI)技术的容错。在对称减少开关计数(SRSC)逆变器中,对于特定的输出电压水平,可能的开关顺序较少。由于设备数量的减少,冗余状态的缺乏影响了逆变器的容错能力,严重影响了逆变器的可靠性,最终导致系统完全停机。而在ARSC逆变器中,对于各种逆变器输出电压水平,冗余状态几乎为零。因此,本文分析了七电平非对称逆变器在单开开关和双开开关故障情况下的运行情况。通过引入双向开关,改进了非对称七电平逆变器的总体结构,提出了两种具有容错功能的非对称逆变器拓扑结构。对于一个或两个开关的开路故障,所提出的拓扑结构将输出电压维持在5级或3级。在MATLAB仿真环境中对电路进行了仿真,并对仿真结果进行了检验,以验证所提拓扑的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault Tolerant Modified Asymmetric MLI Topologies with Reduced Switch Count
The goal of this research work, is to enable fault tolerance in Multilevel Inverter (MLI) technique utilizing Asymmetric Reduced Switch Count (ARSC). In Symmetric Reduced Switch Count (SRSC) inverters possible switching sequence is less for a specific output voltage level. Due to the reduced device count, the lack of redundant states impacts the capability of fault tolerant operation and severely compromises the inverter’s reliability, which resulting in the system’s complete shutdown. Whereas in ARSC inverters redundant states are almost naught for various inverter output voltage levels. Therefore, in this proposed paper the operation of a seven-level asymmetric inverter is analyzed in the event of single and double open switch failures. The general structure of an asymmetric seven-level inverter is modified by inclusion of bidirectional switches and two new asymmetric inverters topologies have been proposed with fault tolerant operational facility. The proposed topologies sustain output voltage either at five level or three level for an open switch fault in one or two switches. Circuits were simulated in the simulation of MATLAB environment and outcomes were checked in order to validate the efficacy of suggested topologies.
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