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A novel three-phase zero-current-transition and quasi-zero-voltage transition (ZCT-QZVT) inverter/rectifier with reduced stresses on devices and components

机译:一种新颖的三相零电流过渡和准零电压过渡(ZCT-QZVT)逆变器/整流器,可减轻器件和组件的应力

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This paper proposes a new soft-switching strategy for three-phase inverter and rectifier applications. All the main switches and auxiliary switches are turned on and turned off under zero-current-transition (ZCT) conditions. Compared to existing ZCT techniques, the diode reverse recovery is reduced, and the main switch turn-on voltage is reduced to less than the DC link voltage from full DC link voltage-referred to as quasi-zero-voltage-transition (QZVT). In addition, the current stress in the auxiliary switches is reduced and evenly distributed, and the resonant capacitor voltage stress is reduced to 1.3/spl sim/1.4 times the DC link voltage from twice the DC link voltage. The operational principle, state plane analysis, and design aspects are described. Both simulation and experiment results are provided for verification. Based on the proposed technique, finally presented is an application example of three-phase soft-switching inverter for electric vehicle propulsion.
机译:本文针对三相逆变器和整流器应用提出了一种新的软开关策略。在零电流转换(ZCT)条件下,所有主开关和辅助开关均被打开和关闭。与现有的ZCT技术相比,二极管的反向恢复能力降低了,主开关的导通电压也降低了,低于全DC链路电压(称为准零电压转换(QZVT))的DC链路电压。此外,辅助开关中的电流应力得以减小并均匀分布,并且谐振电容器的电压应力从DC链路电压的两倍降至DC链路电压的1.3 / spl sim / 1.4倍。描述了工作原理,状态平面分析和设计方面。仿真和实验结果均提供用于验证。基于所提出的技术,最后给出了三相软开关逆变器在电动汽车推进中的应用实例。

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