DocumentCode
1664369
Title
Efficiency Optimization of a 100-W, 500 000-rpm Permanent-Magnet Machine Including Air Friction Losses
Author
Luomi, J. ; Zwyssig, Christof ; Looser, A. ; Kolar, J.W.
Author_Institution
Helsinki Univ. of Technol., Helsinki
fYear
2007
Firstpage
861
Lastpage
868
Abstract
This paper proposes a method for the efficiency optimization of ultra-high-speed permanent-magnet machines. Analytical methods are applied for the modeling of the machine that is equipped with a diametrically magnetized rotor and a slotless stator. The outer dimensions of the machine are design constraints, and the internal dimensioning is optimized for minimum losses. The air friction losses are taken into account in addition to the usual iron losses, copper losses, and eddy current losses. Laminated silicon iron or laminated amorphous iron is used as the stator core material. The results show that air friction losses influence the optimum design considerably, leading to a small rotor diameter at high speeds. The loss minimization and the amorphous iron core make it possible to reduce the calculated losses by 63% as compared to a machine design not considering air friction losses. The resulting efficiency is 95% for a 100-W, 500 000-rpm machine excluding bearing losses.
Keywords
eddy current losses; permanent magnet machines; air friction losses; eddy current losses; laminated amorphous iron; laminated silicon iron; loss minimization; permanent-magnet machine; power 100 W; Amorphous magnetic materials; Amorphous materials; Constraint optimization; Copper; Design optimization; Friction; Iron; Magnetic analysis; Optimization methods; Stator cores;
fLanguage
English
Publisher
ieee
Conference_Titel
Industry Applications Conference, 2007. 42nd IAS Annual Meeting. Conference Record of the 2007 IEEE
Conference_Location
New Orleans, LA
ISSN
0197-2618
Print_ISBN
978-1-4244-1259-4
Electronic_ISBN
0197-2618
Type
conf
DOI
10.1109/07IAS.2007.135
Filename
4347884
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