DocumentCode
1426476
Title
Multiple space vector control for self-commutated power converters
Author
Nakajima, Tatsuhito ; Suzuki, Hirokazu ; Sakamoto, Koji ; Shigeta, Masaaki ; Yamamoto, Hajime ; Miyazaki, Yasuyuki ; Tanaka, Shigeru ; Saito, Suzuo
Author_Institution
Power Electron. Group, Tokyo Electr. Power Co. Inc., Japan
Volume
13
Issue
4
fYear
1998
fDate
10/1/1998 12:00:00 AM
Firstpage
1418
Lastpage
1424
Abstract
This paper proposes a multiple space vector control strategy for self-commutated power converters. The strategy makes it possible to realize a significant reduction in power losses with the lowest possible switching frequency in the steady-state, continuous operation with high speed tracking of commands in the transient state and flexible controls with the utilization of degrees of freedom in the assignment of voltage vectors to the power converters. High efficiency of the strategy is confirmed by experiments in which two pulse switching mode and the speed of response in 5(ms) with one side model of the power converter terminals of self-commutated HVDC (high voltage direct current). The continuous operation is verified by simulations in a one-line ground fault. Another simulation based on the unbalanced DC voltages shows the balance control of DC voltages to be effective in HVDC transmission with self-commutated power converters connected in series on the AC and the DC sides
Keywords
commutation; control system analysis; control system synthesis; power convertors; switching circuits; voltage control; DC voltage balance control; HVDC transmission; control design; multiple space vector control strategy; power losses; self-commutated power converters; switching frequency; two pulse switching mode; voltage regulation; Analog-digital conversion; Automatic control; Automatic voltage control; Control systems; HVDC transmission; Load flow; Load flow analysis; Pulse width modulation; Reactive power control; Voltage control;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.714569
Filename
714569
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