Title :
A Novel Commutation Method of Matrix Converter Fed Induction Motor Drive Using RB-IGBT
Author :
Sun, Kai ; Zhou, Daning ; Huang, Lipei ; Matsuse, Kouki ; Sasagawa, Kiyoaki
Author_Institution :
Dept. of Electr. Eng., Tsinghua Univ., Beijing
Abstract :
This paper gives an overview of a collector-emitter voltage sign-based commutation method. This method is implemented based on the output current sign and commutation voltage polarity signals of matrix converter. All these signals are acquired by a simple unit in the drive and protection boards designed for reverse blocking insulated gate bipolar transistors (RB-IGBTs) of the matrix converter in test. Therefore, no current and/or voltage sensor is required to obtain any other commutation signals. The RB-IGBT samples used are newly developed, and one important feature is that its reverse leakage current is mostly affected by nuge. Under the same temperature condition, when nuce is negative, a positively biased nuge results in a distinct decrease of the reverse leakage current. The proposed commutation method can supply the reverse-blocked RB-IGBTs with positively biased nuge . Hence, the power losses caused by the reverse leakage current can be reduced using the proposed method. Experimental results have proved the feasibility and effectivity of this method
Keywords :
commutation; electric sensing devices; induction motor drives; insulated gate bipolar transistors; leakage currents; matrix convertors; RB-IGBT; collector-emitter voltage sign-based commutation method; commutation voltage polarity signals; matrix converter fed induction motor drives; power loss; reverse blocking insulated gate bipolar transistors; reverse leakage currents; voltage sensors; Commutation; Induction motor drives; Insulated gate bipolar transistors; Leakage current; Matrix converters; Protection; Signal design; Temperature sensors; Testing; Voltage; Commutation; matrix converter; reverse blocking insulated gate bipolar transistor (RB-IGBT); reverse leakage current;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2007.895769