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Fault tolerant architecture of an efficient five-level multilevel inverter with overload capability characteristics

机译:具有过载能力的高效五电平多电平逆变器的容错架构

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摘要

Multilevel inverters (MLIs) are gaining the widespread attention in various industrial applications. However, the advantages offered by MLIs are only met with the employment of a high number of semiconductor switches and capacitors, which are most vulnerable amongst all the power electronic components. Thus, designing of a reliable MLI topology is a need of the present hour. In this regard, a five-level fault tolerant MLI topology has been proposed here. The proposed MLI topology comprises the main inverter topology and a redundant leg. The main inverter topology comprises bidirectional switches which result in high power losses under both healthy and faulty conditions. Eighteen different cases arising from the inherent redundancy available in the main inverter topology have been analysed to achieve the optimum solution for obtaining high efficiency. A novel redundant leg architecture has been designed, which achieves significantly improved efficiency under all faulty conditions. Under overload conditions, the proposed redundant leg architecture is capable of reducing the current stress on the main inverter switches. An effective qualitative and quantitative comparison of the proposed topology with the recent literature has been presented. The feasibility of the proposed concepts has been verified by the obtained simulation and hardware results.
机译:多电平逆变器(MLI)在各种工业应用中得到了广泛的关注。但是,只有使用大量的半导体开关和电容器才能满足MLI提供的优势,而半导体开关和电容器在所有功率电子组件中最容易受到攻击。因此,目前需要一个可靠的MLI拓扑设计。在这方面,这里提出了五级容错MLI拓扑。所提出的MLI拓扑包括主逆变器拓扑和冗余支路。主逆变器拓扑包括双向开关,双向开关会在正常和故障情况下导致高功率损耗。对主逆变器拓扑中可用的固有冗余引起的18种不同情况进行了分析,以实现获得高效率的最佳解决方案。设计了一种新颖的冗余支路架构,可在所有故障条件下显着提高效率。在过载条件下,提出的冗余支路架构能够减少主逆变器开关上的电流应力。提出了一种有效的定性和定量比较所提出的拓扑结构与最近的文献。所获得的仿真和硬件结果已验证了所提出概念的可行性。

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