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A Reduced Component Count Five-Level Inverter Topology for High Reliability Electric Drives

机译:用于高可靠性电力驱动器的减少组件数的五电平逆变器拓扑

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This paper presents a reduced component count five-level inverter topology based on the stacked cell approach to multi-level inverters. The proposed topology utilizes the fundamental properties of three-phase voltages to reduce the number of switches and flying capacitors to cut size, weight and costs while facilitating higher reliability, simpler wiring and lesser electromagnetic interference. The operational aspects of the topology such as circuit structure, modulation and capacitor balancing are explained, followed by an account of device stresses and reliability. A discussion of certain additional features such as fault tolerant operation, loss steering and common-mode elimination addresses the usefulness of the topology in practical situations. A comparison of the proposed topology with existing methods in terms of several parameters is then used to highlight its merits and features. Finally, experimental results obtained using an induction motor drive incorporating the topology are given, so as to validate the feasibility of the proposed approach.
机译:本文提出了一种基于堆叠单元方法的多级逆变器,减少了组件数量,降低了五级逆变器的拓扑结构。拟议的拓扑结构利用三相电压的基本特性来减少开关和飞跨电容器的数量,以减小尺寸,重量和成本,同时促进更高的可靠性,更简单的布线和更少的电磁干扰。解释了拓扑的操作方面,例如电路结构,调制和电容器平衡,然后说明了设备应力和可靠性。对某些其他功能(例如,容错操作,损耗控制和共模消除)的讨论解决了拓扑在实际情况下的有用性。然后根据几个参数对提议的拓扑与现有方法进行比较,以突出其优缺点。最后,给出了使用结合了拓扑结构的感应电动机驱动器获得的实验结果,从而验证了该方法的可行性。

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