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research article

Rotor Design Optimization for a Reaction Sphere Actuator

Rossini, L.
•
Mingard, S.
•
Boletis, A.
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2014
IEEE Transactions on Industry Applications

This paper presents the rotor design optimization for a reaction sphere (RS) actuator. The RS is a permanent-magnet synchronous spherical actuator whose rotor is magnetically levitated and can be accelerated about any desired axis. The RS is composed of an 8-pole permanent-magnet (PM) spherical rotor and of a 20-coil stator. Due to the highly complex geometry of the spherical rotor, consisting of eight bulk PM poles with truncated spherical shape adjusted on the back-iron structure with truncated octahedral shape, a pure analytical approach for the optimization problem is not practicable. Therefore, given a set of specifications, the optimization of design parameters is performed using finite-element simulations to minimize the rotor magnetic flux density distortion with respect to the fundamental harmonic. The resulting optimized rotor is fully compliant with design specifications. Finally, experimental measurements on the manufactured rotor are reported showing a strong correspondence with the specified flux density values.

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Type
research article
DOI
10.1109/Tia.2013.2282660
Web of Science ID

WOS:000338984300012

Author(s)
Rossini, L.
Mingard, S.
Boletis, A.
Forzani, E.
Onillon, E.
Perriard, Y.  
Date Issued

2014

Publisher

Institute of Electrical and Electronics Engineers

Published in
IEEE Transactions on Industry Applications
Volume

50

Issue

3

Start page

1706

End page

1716

Subjects

Design optimization

•

Magnetic levitation

•

Reaction sphere (RS)

•

Satellite attitude control

•

Spherical actuator

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LAI  
Available on Infoscience
September 2, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/106640
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