To find a way to improve commutation and decrease the level of spark for low-voltage high-current vehicle generators
non-uniformly distributed and asymmetrically constructed magnetic poles
non-uniform commutating magnetic poles
single wave windings with voltage averaged and oblique brush
are adopted. The distribution of the flux line
the wave of the air gap magnetic field
and analysis inner magnetic field under loaded and unloaded conditions are analyzed respectively with finite element method. The results reveal that the magnetic field induced by the main poles is still symmetric and uniform in spite of the asymmetric structure
so it ensures the provision of suitable medium space for mechanical and electrical energy conversion. The commutating poles are able to decrease the magnetic flux density contrast with the generator without commutating poles according to analysis the curve of the gap magnetic field and the distribution of the inner magnetic field in them. The EMF drops by 42.3% on the average due to the functions of commutating poles
and the spark experiment also shows the improved commutation. This design scheme facilitates commutation
and decreases the spark level and inhibits the electromagnetic interference to heighten the stability
reliability and security of generators.
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references
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