Title :
Multilevel converters for large electric drives
Author :
Tolbert, Leon M. ; Peng, Fang Zheng ; Habetler, Thomas G.
Author_Institution :
Oak Ridge Nat. Lab., TN, USA
Abstract :
This paper presents transformerless multilevel power converters as an application for high-power and/or high-voltage electric motor drives. Multilevel converters: (1) can generate near-sinusoidal voltages with only fundamental frequency switching; (2) have almost no electromagnetic interference or common-mode voltage; and (3) are suitable for large voltampere-rated motor drives and high voltages. The cascade inverter is a natural fit for large automotive all-electric drives because it uses several levels of DC voltage sources, which would be available from batteries or fuel cells. The back-to-back diode-clamped converter is ideal where a source of AC voltage is available, such as in a hybrid electric vehicle. Simulation and experimental results show the superiority of these two converters over two-level pulsewidth-modulation-based drives
Keywords :
AC motor drives; DC-AC power convertors; PWM invertors; DC voltage source levels; PWM power conversion; back-to-back diode-clamped converter; cascade inverter; hybrid electric vehicle; large electric motor drives; near-sinusoidal voltage generation; transformerless multilevel power converters; Automotive engineering; Batteries; Electric motors; Electromagnetic interference; Frequency conversion; Fuel cells; Inverters; Motor drives; Switching converters; Voltage;
Journal_Title :
Industry Applications, IEEE Transactions on