PROJECT TITLE :

Closed-Form Solution for Axial Flux Permanent-Magnet Machines With a Traction Application Study

ABSTRACT:

This research attempts to seek out a replacement closed-type solution for axial flux permanent-magnet (AFPM) machines and applies it during a traction application example. The machine types considered are with toroid and overlapping windings. The proposed closed-kind resolution includes analytical derivations for winding lengths, resistances, and inductances as functions of basic air-gap flux density and inner-to-outer diameter ratio. Finite-element analysis is used to verify the accuracy of the proposed analytical calculations. Furthermore, a parametric analysis is performed on inductances, resistances, part back-EMFs, phase terminal voltages, efficiencies, and torque speed capability to check for both winding varieties. The proposed solution should assist traction machine designers to establish benefits and limitations of the toroid and overlapping winding sorts in traction application and to attain faster design results.


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