DocumentCode
1315158
Title
A Miniature 500 000-r/min Electrically Driven Turbocompressor
Author
Krähenbühl, Daniel ; Zwyssig, Christof ; Weser, Hansjörg ; Kolar, Johann W.
Author_Institution
Power Electron. Syst. Lab., ETH Zurich, Zurich, Switzerland
Volume
46
Issue
6
fYear
2010
Firstpage
2459
Lastpage
2466
Abstract
The trend in compressors for fuel cells, heat pumps, aerospace, and automotive heating, ventilation, and air-conditioning systems is toward ultracompact size and high efficiency. This can be achieved by using turbocompressors instead of scroll, lobe, or screw compressors, increasing the rotational speed and employing new electrical drive system technology and materials. This paper presents a miniature electrically driven two-stage turbocompressor system running at a rated speed of 500 000 r/min. The design includes the thermodynamic analysis, the electric motor, the inverter, the control, and the system integration with rotor dynamics and thermal considerations. Experimental measurements such as the compressor map are presented for air under laboratory conditions. The two-stage turbocompressor has been tested up to a speed of 600 000 r/min, where a maximal pressure ratio of 2.3 at a mass flow of 0.5 g/s has been reached. To the authors´ knowledge, this is the highest rotational speed achieved with an electrically driven turbocompressor.
Keywords
compressors; electric motors; rotors; small electric machines; turbomachinery; air-conditioning systems; automotive heating; compressor map; electric motor; electrical drive system technology; fuel cells; heat pumps; inverter; miniature electrically driven two-stage turbocompressor system; rotational speed; rotor dynamics; system integration; thermal considerations; thermodynamic analysis; ultracompact size; ventilation systems; Compressors; Permanent magnet machines; Power electronics; Rotors; Torque; Turbomachinery; Velocity control; Electric drives; permanent-magnet (PM) machines; turbocompressor; ultrahigh speed;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2010.2073673
Filename
5565471
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