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A fast hybrid modeling method is proposed for the 2D analysis of a linear flux switching machine. A magnetic equivalent circuit in conjunction with the boundary element method is applied to the geometry to accurately determine the airgap permeances. The model can also take into account the non-linear behavior of the soft magnetic parts of the machine. The force response obtained by the hybrid method...
In this paper, a nonlinear magnetic circuit network model for the analysis of a three-phase 12-stator-slot/10-rotor-pole flux-switching permanent-magnet (FSPM) motor is proposed considering localized saturation effect, which enables the predictions of open-circuit air-gap field distributions, phase flux-linkage, phase back-electro-motive-force (back-EMF) and winding inductances waveforms. Further,...
The investigation on flux-switching permanent-magnet (FSPM) machines in existing papers has been restricted to a specific combination of stator and rotor pole numbers, viz., 12/10 stator/rotor poles. In this paper, the influence of stator and rotor pole numbers on the optimal parameters of the FSPM machines are investigated by the finite-element analysis and the lumped-parameter magnetic circuit model,...
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