Optimized switching sequence for snubberless operation of bilateral MCT switches in AC resonant link converters

N. Langovsky, M. Elbuluk, M. D. Kankam
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引用次数: 1

Abstract

This paper revisits a discrete form of a bilateral switch that is used in AC resonant link power converters (ACRLCs). The active power device used is the MOS-controlled thyristor (MCT). The switch topology offers high levels of component integration, and increases the modular design of ACRLCs. However, the topology can cause problems due to the nonidealities of the solid-state devices. A simple solution to these problems is presented in the form of a switching sequence that allows all switches to theoretically commutate current at zero-voltage. Also, the proposed sequencing of the devices eliminates the need for snubber components. Simulation and experimental results are presented and discussed.
交流谐振链路变换器中双侧MCT开关无缓冲运行的优化开关顺序
本文回顾了用于交流谐振链路功率转换器(acrlc)的双边开关的离散形式。所使用的有源功率器件是mos控制晶闸管(MCT)。开关拓扑提供了高水平的组件集成,并增加了acrlc的模块化设计。然而,由于固态器件的非理想性,拓扑结构可能会导致问题。对于这些问题,一个简单的解决方案是以开关序列的形式提出的,该开关序列允许所有开关理论上在零电压下换流。此外,拟议的设备排序消除了对缓冲组件的需求。给出了仿真和实验结果并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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