Title :
Multilevel voltage-source duty-cycle modulation: analysis and implementation
Author :
Corzine, Keith A. ; Baker, James R.
Author_Institution :
Dept. of Electr. Eng., Wisconsin Univ., Milwaukee, WI, USA
fDate :
10/1/2002 12:00:00 AM
Abstract :
Multilevel converters have become increasingly popular due to high power quality, high-voltage capability, low switching losses, and low electromagnetic compatibility concerns. Considering these advantages, the multilevel converter is a suitable candidate for implementation of future naval ship propulsion systems. This paper focuses on modulation techniques for the multilevel converter. In particular, a novel voltage-source method of multilevel modulation is introduced and compared to existing methods. The proposed method is discrete in nature and can therefore be readily implemented on a digital signal processor. The method is also readily extendable to any number of voltage levels. Results of experimental implementation are demonstrated using a four-level rectifier/inverter system, which incorporates diode-clamped multilevel converters and an 11-level cascaded multilevel H-bridge inverter.
Keywords :
PWM invertors; PWM power convertors; bridge circuits; electric propulsion; naval engineering; power supplies to apparatus; rectifying circuits; ships; switching circuits; 11-level cascaded multilevel H-bridge inverter; diode-clamped multilevel converters; four-level rectifier/inverter system; high power quality; high-voltage capability; low electromagnetic compatibility; low switching losses; modulation techniques; multilevel converter; multilevel converters; multilevel voltage-source duty-cycle modulation; pulsewidth modulation; ship propulsion systems; sine triangle; space vector; voltage source; voltage-source method; Digital signal processors; Electromagnetic compatibility; Inverters; Marine vehicles; Power quality; Propulsion; Rectifiers; Switching converters; Switching loss; Voltage;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2002.803203