DocumentCode
3011111
Title
A high performance generalized discontinuous PWM algorithm
Author
Hava, Ahmet M. ; Kerkman, Russel J. ; Lipo, Thomas A.
Author_Institution
Wisconsin Univ., Madison, WI, USA
Volume
2
fYear
1997
fDate
23-27 Feb 1997
Firstpage
886
Abstract
In this paper a generalized discontinuous pulse width modulation (GDPWM) method with superior high modulation operating range performance characteristics is developed. An algorithm which employs the conventional space vector PWM method in the low modulation range, and the GDPWM method in the high modulation range is established. As a result, the current waveform quality, switching losses, voltage linearity range and the overmodulation region voltage gain of a PWM-VSI drive are optimized online as opposed to conventional modulators with fixed characteristics. Due to its compactness, simplicity and superior performance, the algorithm is suitable for most high performance PWM-VSI drive applications. The paper provides a detailed performance analysis of the method and compares it to the other methods. Experimental results verify the superiority or this algorithm to conventional PWM methods
Keywords
DC-AC power convertors; PWM invertors; control system synthesis; harmonic distortion; power system harmonics; switching circuits; voltage control; PWM VSI; compactness; current waveform quality; generalized discontinuous PWM algorithm; high modulation range; low modulation range; overmodulation region voltage gain; performance; simplicity; space vector PWM method; switching losses; voltage control design; voltage linearity range; Automation; Drives; Frequency; Linearity; Pulse width modulation; Pulse width modulation inverters; Space vector pulse width modulation; Switches; Switching loss; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Power Electronics Conference and Exposition, 1997. APEC '97 Conference Proceedings 1997., Twelfth Annual
Conference_Location
Atlanta, GA
Print_ISBN
0-7803-3704-2
Type
conf
DOI
10.1109/APEC.1997.575750
Filename
575750
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