Rapid design of 12-slot 10-pole flux-switching hybrid excitation machine
Jinming Xu
Abstract
Jinming Xu
Abstract
In order to provide an analytical technique for the flux-switching hybrid excitation machine(FSHM) design,a nonlinear magnetic circuit method(NMCM) of maximum phase flux-linkage position was proposed.With equivalent magnetic circuit model as original version,NMCM adopts the subdivision technology of magnetic circuit and iterative solutions methods,taking magnetic saturation into account.The ampere-turns of electric excitation,the recommended value of initial magnetic bridge flux density,and the influence of stator yoke thickness on magnet dimensions and field regulating coefficient were also investigated.A 1.5 kW 12 /10 pole prototype FSHM was designed and the experiment was done.The finite element analysis and the experimental results demonstrate the correctness and effectiveness of the proposed design method.It provides reference for the assignment for electric excitation and permanent magnet excitation,and the field regulating coefficient.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In order to provide an analytical technique for the flux-switching hybrid excitation machine(FSHM) design,a nonlinear magnetic circuit method(NMCM) of maximum phase flux-linkage position was proposed.With equivalent magnetic circuit model as original version,NMCM adopts the subdivision technology of magnetic circuit and iterative solutions methods,taking magnetic saturation into account.The ampere-turns of electric excitation,the recommended value of initial magnetic bridge flux density,and the influence of stator yoke thickness on magnet dimensions and field regulating coefficient were also investigated.A 1.5 kW 12 /10 pole prototype FSHM was designed and the experiment was done.The finite element analysis and the experimental results demonstrate the correctness and effectiveness of the proposed design method.It provides reference for the assignment for electric excitation and permanent magnet excitation,and the field regulating coefficient.
Key concepts: Excitation, Magnet, Magnetic circuit, Flux linkage, Stator, Magnetic flux, Magnetic field, Control theory (sociology)