Title :
A high efficiency two-phase interleaved inverter for wide range output waveform generation
Author :
Rixin Lai ; Lei Wang ; Sabate, Juan
Author_Institution :
Power Conversion & Delivery, GE Global Res., Niskayuan, NY, USA
Abstract :
High voltage (3.3kV) SiC MOSFET devices enable high power density power conversion with fast switching and acceptable switching losses. The combination of fast switching device and soft-switching, which eliminates the losses of the turn on or off transition and limits the di/dt and dv/dt, becomes more important with high voltages. This paper presents a two-phase interleaved inverter which can achieve zero voltage switching (ZVS) operation for very wide output range with different voltage and current waveforms. The ZVS is realized without any additional active switches or passive components. ZVS is obtained with a phase-shift angle modulation scheme changing according to the load to minimize ripple current for all cases. It results in the lowest inductor RMS current, achieving ZVS at each load, and therefore high efficiency. The circuit operation and the impact of the phase-shift angle are described in details and the feasible ZVS range is analyzed. The analysis and design have been verified with simulation results. A 2.1kV H-bridge inverter with 3.3kV SiC MOSFETs was built and tested.
Keywords :
MOSFET; inductors; invertors; losses; phase modulation; power conversion; silicon compounds; wide band gap semiconductors; zero voltage switching; H-bridge inverter; SiC; ZVS operation; active switches; circuit operation; current waveforms; fast switching device; high efficiency two-phase interleaved inverter; high power density power conversion; high voltage MOSFET devices; inductor RMS current; passive components; phase-shift angle modulation scheme; ripple current; soft-switching; turn off transition; turn on transition; voltage 2.1 kV; voltage 3.3 kV; voltage waveforms; wide range output waveform generation; zero voltage switching operation; Inductors; Inverters; Silicon carbide; Switches; Switching frequency; Zero voltage switching;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2012 IEEE
Conference_Location :
Raleigh, NC
Print_ISBN :
978-1-4673-0802-1
Electronic_ISBN :
978-1-4673-0801-4
DOI :
10.1109/ECCE.2012.6342204