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Reliability Analysis of Three Homogeneous Fault-tolerant Inverter Topologies

机译:三种同质容错逆变器拓扑的可靠性分析

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In this article, non-redundant fault-tolerant inverter topologies are addressed. A novel fault-tolerant control strategy which enhances performances during post-fault operation is proposed. Benefits from the proposed strategy over conventional fault-tolerant topologies are investigated in terms of system reliability. Cost, post-fault performances, and system reliability of the proposed solution are compared with both a conventional triac-based fault-tolerant inverter and a T-type inverter. The reliability analysis of each selected configuration is carried out by means of Markov chains. The analysis is validated through a comparison of reliability and sensitivity curves. As shown by simulation results, the proposed fault-tolerant inverter features the highest reliability and the least sensitivity to devices' failure rates. The proposed analysis contributes to the development and improvement of a reliability-oriented design approach.
机译:本文介绍了非冗余容错逆变器拓扑。提出了一种新颖的容错控制策略,可以提高故障后操作的性能。就系统可靠性而言,研究了所提出策略相对于常规容错拓扑的优势。将该解决方案的成本,故障后性能和系统可靠性与常规的基于双向可控硅的容错逆变器和T型逆变器进行了比较。每个选定配置的可靠性分析都是通过马尔可夫链进行的。通过比较可靠性曲线和灵敏度曲线来验证分析。仿真结果表明,所提出的容错逆变器具有最高的可靠性和对设备故障率的最低敏感度。提出的分析有助于开发和改进面向可靠性的设计方法。

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