Fractional slot wave winding symmetrical four-branch wiring method
A wiring method and branch circuit technology, applied in the shape/style/structure of winding conductors, can solve the problems of weakening high-order harmonics and limiting the number of branches in motor performance, and achieve the effect of weakening high-order harmonics
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[0018] Embodiment: a fractional slot wave winding symmetrical four-branch wiring method, the present invention sets the number of motor pole pairs to be p, the number of motor slots to be Z, the number of phases m=3, the number of pole pairs p is an odd number, and each pole is an odd number. The number of phase slots q is expressed as q=Z / (2pm)=b+c / p (where b, c, and p are positive integers, and c / p is an irreducible true fraction). Under this condition, 3q=3(b+c / p)=H+e / p is defined, where H is the integer closest to 3q, and e is the smallest (±) integer that makes H closest to 3q. figure 1 It is a schematic diagram of the slot position when Z slot, q=b+c / p, e=-2, the meaning of H is the slot connected with the interval H pitch, and the slot position difference Δ=e / p, so within the range of q slot That is, the number of slots N that can be connected according to the slot position difference of Δ in the 60° phase band is N=q / Δ=(b+c / p) / (e / p)=(bp+c) / e slots, These N slots are r...
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