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Eddy-Current Loss in the Rotor Magnets
2462 IEEE TRANSACTIONS ON MAGNETICS, VOL. 41, NO. 9, SEPTEMBER 2005
Eddy-Current Loss in the Rotor Magnets
of Permanent-Magnet Brushless Machines
Having a Fractional Number of Slots Per Pole
Dahaman Ishak, Z. Q. Zhu, Senior Member, IEEE, and David Howe
Department of Electronic and Electrical Engineering, University of Sheffield, Sheffield S1 3JD, U.K.
We develop an analytical model for predicting the eddy-current loss in the rotor magnets of permanent-magnet brushless machines
that have a fractional number of slots per pole, when either all the teeth or only alternate teeth are wound, and in which the unwound
teeth may be narrower than the wound teeth. The model enables the magnetic field distribution in the air gap and magnet regions to
be determined, by neglecting the eddy-current redistribution effect and assuming that the eddy currents are resistance limited. It can
account for space-harmonic magnetomotive forces (MMFs) resulting from the winding distribution and time-harmonic MMFs due to
nonsinusoidal phase currents, as well as for the effect of curvature and circumferential segmentation of the magnets. We have validated
the model by finite-element analysis, and used it to investigate the eddy-current loss in the magnets of three surface-mounted magnet
brushless motors that have similar slot and pole numbers, and employ identical rotors but different stators, when they are operated in
brushless ac (BLAC) and dc (BLDC) modes. We show that the stator winding configuration, as well as the operational mode, significantly
influence the resultant eddy-current loss.
Index Terms—Brushless machines, eddy currents, fractional slots/per pole, permanent magnet.
I. INTRODUCTION
THE eddy-current loss that is induced in the permanentmagnets of brushless machines is often neglected [1].
However, this assumption may not always be justified. For
example, machine designs are emerging in which the torque
is produced by the interaction of a space-harmonic mag-
netomotive force (MMF
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