Coil Design for a Moving-Magnet Planar Motor using the Stream-Function Method

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This paper concerns the synthesis of a coil for a moving-magnet planar motor that reduces the inherent force ripple which is present in the traditional racetrack coil. The synthesis is performed by the stream-function method, which gives extra degrees of freedom in the design and allows the coil shape to be defined based on constraints on the force production. The shape of the optimized coil is analyzed and the harmonic content in the force production is compared with a racetrack coil. The coil synthesized by the stream-function method reduces the peak and root mean square value of the parasitic force in the y-direction by 73% and the harmonic content in the force production in the x-, y,-and z-directions are reduced by over 71.4%.

Originele taal-2Engels
TijdschriftIEEE Transactions on Magnetics
VolumeXX
Nummer van het tijdschriftX
DOI's
StatusE-publicatie vóór gedrukte publicatie - 13 feb. 2025

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© 1965-2012 IEEE.

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