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Article Dans Une Revue European Physical Journal: Applied Physics Année : 2010

General modeling of the windings for multi-phase ac machines

F. Scuiller
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E. Semail
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J.-F. Charpentier
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Résumé

This paper, which deals with the winding modeling of ac multi-phase machines with a regular distribution of the stator slots, details an original matrix modeling of the stator winding. First, the properties of the balanced multi-phase windings (with integral-slot and fractional-slot patterns) are analysed. The winding function approach, one of the most common way to model the winding distribution effects on the stator rotating field, is then introduced. For multi-phase machines, it will be shown that the pole number generated by the winding distribution depends on a new parameter: the circularity index. The discrete nature of the winding, imposed by the stator slots, leads to the development of a discrete modeling of the winding obtained from sampling the winding function: two matrices, the winding function matrix and the distribution function matrix, are introduced to characterize the multi-phase winding. This matrix approach is thus a concise way to calculate the winding factors and to estimate the set of self and mutual stator inductances for smooth air gap multi-phase machines. A particularly original method of obtaining an analytical expression for the leakage mutual inductance is described. The results are validated with two experimental 5-phase PM machines by using experimental measurements and numerical simulations.

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Dates et versions

hal-00593671 , version 1 (17-05-2011)

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F. Scuiller, E. Semail, J.-F. Charpentier. General modeling of the windings for multi-phase ac machines. European Physical Journal: Applied Physics, 2010, 50 (3), pp.31102. ⟨10.1051/epjap/2010058⟩. ⟨hal-00593671⟩

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