DocumentCode
3201184
Title
Staggered sampling space vector modulation for multi-motor AC-drive active front end converters
Author
Wiechmann, Eduardo P. ; Burgos, Rolando P. ; Boboyevich, D.
Author_Institution
Univ. of Concepcion, Chile
Volume
1
fYear
2000
fDate
2000
Firstpage
282
Abstract
This paper proposes the use of staggered sampling SVM for multi-motor AC drive active front end converters (AFE). Particularly an 800 kVA drive comprising 22 adjustable speed drives (ASD) was considered. Under the proposed modulation scheme PWM-VSR operate with a sampling frequency of 1.2 kHz and a switching frequency of 850 Hz. Consequently reducing commutation losses by 85% compared to a multi-motor drive employing synchronized SVM. This is achieved while keeping the drive´s input current THD beneath 5%. Further, the use of staggered sampling SVM in the AFE converters helped in reducing by 84% their input filters´ size. All these features were accomplished by gathering AFE converters into six groups of staggered sampling, thus inducing harmonic current cancellation between them. Moreover, SVM in the AFE converters was complemented with a nonlinear control scheme, which provided them with a linearized and decoupled d-q axes dynamics. A reactive power control loop in this scheme enabled the multi-motor drive to operate as a VAr compensator. A compensating capacity of 250 kVAr was attained with the drive under study. Simulation results obtained under different operating conditions showed the feasibility of the proposed modulation scheme for multi-motor AC drive AFE converters
Keywords
AC motor drives; PWM power convertors; commutation; losses; machine control; modulation; power conversion harmonics; reactive power control; rectifying circuits; static VAr compensators; variable speed drives; 1.2 kHz; 250 kVAr; 800 kVA; 850 Hz; PWM voltage source rectifiers; VAr compensator; adjustable speed drives; commutation losses reduction; decoupled d-q axes dynamics; harmonic current cancellation; input current THD; multi-motor AC-drive active front end converters; nonlinear control scheme; reactive power control loop; sampling frequency; staggered sampling space vector modulation; switching frequency; Commutation; Power harmonic filters; Power quality; Pulse width modulation; Pulse width modulation converters; Sampling methods; Space technology; Support vector machines; Switching frequency; Variable speed drives;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics, 2000. ISIE 2000. Proceedings of the 2000 IEEE International Symposium on
Conference_Location
Cholula, Puebla
Print_ISBN
0-7803-6606-9
Type
conf
DOI
10.1109/ISIE.2000.930527
Filename
930527
Link To Document