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A Hybrid-Switch-Based Soft-Switching Inverter for Ultrahigh-Efficiency Traction Motor Drives

机译:基于混合开关的软开关逆变器,用于超高效牵引电机驱动

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摘要

This paper presents a hybrid switch that parallels a power MOSFET and an insulated-gate bipolar transistor (IGBT) as the main switch of a zero-voltage switching (ZVS) inverter. The combination features the MOSFET conducting in the low-current region and the IGBT conducting in the high-current region, and the soft switching avoids the reverse recovery problem during the device turn-on. A custom hybrid switch module has been developed for a variable-timing-controlled coupled-magnetic-type ZVS inverter with a nominal input voltage of 325 V and the continuous output power of 30 kW for a traction motor drive. Experimental results of the hybrid-switch-based inverter with the total loss projected by temperature indicate that the inverter achieves 99% efficiency at the nominal condition and demonstrate ultrahigh-efficiency operation over a wide load range. At 375-V input, the maximum measured efficiency through temperature projection and loss separation analysis is 99.3%.
机译:本文提出了一种混合开关,该开关与功率MOSFET和绝缘栅双极型晶体管(IGBT)并联,作为零电压开关(ZVS)逆变器的主开关。这种组合具有MOSFET在低电流区域导通和IGBT在高电流区域导通的特点,并且软开关避免了器件导通期间的反向恢复问题。已为可变定时控制的耦合磁型ZVS逆变器开发了定制的混合开关模块,其牵引电机驱动的标称输入电压为325 V,连续输出功率为30 kW。基于温度预测的总损耗的混合开关型逆变器的实验结果表明,该逆变器在标称条件下可实现99%的效率,并证明了在宽负载范围内的超高效运行。在375V输入时,通过温度预测和损耗分离分析得出的最大测得效率为99.3%。

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