Title :
A Hybrid-Switch-Based Soft-Switching Inverter for Ultrahigh-Efficiency Traction Motor Drives
Author :
Jih-sheng Lai ; Wensong Yu ; Pengwei Sun ; Leslie, Scott ; Arnet, Beat ; Smith, Colin ; Cogan, Art
Author_Institution :
Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
Abstract :
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%.
Keywords :
insulated gate bipolar transistors; invertors; power MOSFET; traction motor drives; zero current switching; zero voltage switching; IGBT; ZVS inverter; coupled magnetic; hybrid switch; insulated gate bipolar transistor; low-current region; power 30 kW; power MOSFET; separation analysis; soft switching inverter; temperature projection; ultrahigh-efficiency traction motor drives; variable timing control; voltage 325 V; voltage 375 V; zero voltage switching inverter; Capacitors; Delays; Insulated gate bipolar transistors; Inverters; Logic gates; MOSFET; Switches; Electric vehicles; high efficiency; hybrid switch; motor drives; soft-switching inverter;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2013.2284296