DocumentCode
1850164
Title
Elimination of dead time effects in three phase inverters
Author
Cardenas, Victor ; Echavarria, R.
Author_Institution
Centro Nacional de Investigacion y Desarrollo Tecnologico
fYear
1996
fDate
14-17 Oct 1996
Firstpage
258
Lastpage
262
Abstract
In the design of inverters it is necessary to include a “dead time” in switching signals in order to avoid the simultaneous conduction of the devices on the same electrical trajectory or leg. Incorporation of this dead time produces a modification on commutation real angles with respect to the theoreticals. In this paper, an analysis and compensation of the dead time effects in three phase inverters is presented. It is shown that the dead time generates a decrease in the magnitude voltage of the harmonic fundamental and an increase in the low order harmonics. The paper also includes the implementation of a technique to compensate the dead time effect through the sensing current; this technique is applicable to sinusoidal and programmed PWM techniques. The analysis and compensation of the dead time are validated by means of experimental results in a three phase inverter for an induction motor drive, and a three phase inverter for UPS
Keywords
PWM invertors; commutation; compensation; induction motor drives; power system harmonics; switching circuits; uninterruptible power supplies; UPS; commutation real angles; dead time effects compensation; dead time effects elimination; induction motor drive; low order harmonics; programmed PWM techniques; sensing current; sinusoidal PWM techniques; switching signals; three phase inverters; Active filters; Circuits; Commutation; Leg; Power harmonic filters; Pulse width modulation; Pulse width modulation inverters; Uninterruptible power systems; Variable speed drives; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics Congress, 1996. Technical Proceedings. CIEP '96., V IEEE International
Conference_Location
Cuernavaca
Print_ISBN
0-7803-3633-X
Type
conf
DOI
10.1109/CIEP.1996.618549
Filename
618549
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