DocumentCode :
1888346
Title :
An auxiliary resonant soft switching matrix converter
Author :
Bland, M.J. ; Clare, J.C. ; Wheeler, P.W. ; Empringham, L. ; Apap, M.
Author_Institution :
Nottingham Univ., UK
Volume :
3
fYear :
2004
fDate :
20-25 June 2004
Firstpage :
2393
Abstract :
This paper is concerned with the design, construction and testing of a 3-phase to 3-phase soft switching matrix converter. Two auxiliary soft switching circuits are added to each output phase in order to achieve soft switching without significantly increasing the conduction losses. The converter operation is discussed with reference to theoretical waveforms. The distribution of the switching losses with respect to load current and commutation voltage is investigated. Using the proposed topology it is possible to disable the auxiliary switch when the current and/or voltage is low. This simplifies the design of the auxiliary circuit as the range of operating conditions is reduced, allowing better optimisation in terms of switching losses and commutation speed. We present results from a 3-phase to 3-phase prototype matrix converter showing switching waveforms for all commutation scenarios. Measurements of the overall power circuit losses are presented and comparisons are made with conventional hard switching matrix converters. The distribution of losses between the different loss mechanisms will be investigated for both converters. It is shown that the switching losses for the main switches is reduced by about 50% but this is compensated for by the losses in the auxiliary switches resulting in no significant increase in efficiency. Further research will be required to develop viable soft switching matrix converter structures.
Keywords :
commutation; loss measurement; matrix convertors; optimisation; resonant power convertors; switching convertors; auxiliary soft switching circuits; commutation scenarios; commutation speed; commutation voltage; conduction losses; load current; optimisation; power circuit loss measurements; resonant soft switching matrix converter; switching loss distribution; switching waveforms; theoretical waveforms; Circuit testing; Circuit topology; Design optimization; Low voltage; Matrix converters; Prototypes; Resonance; Switches; Switching circuits; Switching loss;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Specialists Conference, 2004. PESC 04. 2004 IEEE 35th Annual
ISSN :
0275-9306
Print_ISBN :
0-7803-8399-0
Type :
conf
DOI :
10.1109/PESC.2004.1355496
Filename :
1355496
Link To Document :
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