Title :
Neuro-Computing Vector Classification SVM Schemes to Integrate the Overmodulation Region in Neutral Point Clamped (NPC) Converters
Author :
Saeedifard, Maryam ; Bakhshai, Alireza
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Toronto, Ont.
fDate :
5/1/2007 12:00:00 AM
Abstract :
Three-level neutral point clamped (NPC) voltage source converters have recently emerged as important alternatives to conventional two-level converter topologies in high-power medium-voltage energy conversion applications, particularly in high performance ac motor drive systems. An all-inclusive modulation strategy for NPC converters should have the capability of extending the operating range of the converter into the overmodulation region with a smooth and linear transition characteristic. An overmodulation switching strategy based on the space vector classification technique for three-level NPC converters is introduced in this paper. The proposed overmodulation modes, make possible continuous control of the output voltage up to the maximum possible with a smooth linear transition characteristic, and minimum distortions. A theoretical basis for the vector classification space vector modulation technique in the overmodulation region is presented, and the proposed overmodulation schemes are validated by analysis, simulation and experimentation on a 2-KVA three-level NPC converter laboratory prototype
Keywords :
AC motor drives; matrix algebra; modulation; power convertors; 2 kVA; ac motor drive systems; high power medium voltage energy conversion; linear transition; neuro-computing vector classification SVM schemes; neutral point clamped converters; output voltage control; overmodulation region; overmodulation switching strategy; space vector modulation technique; AC motors; Analytical models; Energy conversion; Functional analysis; Medium voltage; Support vector machine classification; Support vector machines; Switching converters; Topology; Voltage control; Classification Algorithm; overmodulation; space vector modulation (SVM); three-level converter;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2007.897009