Modular multi-phase permanent magnet synchronous motor based on single-layer and double-layer hybrid windings
A permanent magnet synchronous motor, hybrid winding technology, applied in synchronous motors with stationary armatures and rotating magnets, windings, electric components, etc., can solve the difficulty of fault isolation, high degree of electromagnetic coupling between phases, and modular design of motors Difficulty and other problems, to achieve the effect of low manufacturing and maintenance costs, high motor efficiency, and good magnetic isolation effect
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specific Embodiment approach 1
[0018] Specific implementation mode one: the following combination Figure 1 to Figure 3 Describe this embodiment, the modular multiphase permanent magnet synchronous motor based on the single-layer hybrid winding described in this embodiment, it includes a stator 1 and a permanent magnet rotor 2, the stator 1 is arranged inside or outside the permanent magnet rotor 2, and A radial air gap of width L is left between the two;
[0019] The stator 1 is assembled from m identical stator modules, and the assembled stator 1 is disc-shaped; m is a positive integer;
[0020] Each stator module includes a stator core 3 and 2n concentrated windings 5; the stator core 3 is sequentially provided with a first fault-tolerant tooth 3-1, 2n armature teeth 3-2 and a second fault-tolerant tooth 3-3 in a clockwise direction. Surrounded by 2n+1 stator slots 4, 2n concentrated windings 5 are set in 2n+1 stator slots 4, and the stator slots 4 are set facing the permanent magnet rotor 2; each arm...
specific Embodiment approach 2
[0027] Embodiment 2: This embodiment further describes Embodiment 1. The motor has m-phase windings, and all concentrated windings 5 inside each stator module together form a phase winding.
[0028] And there is no magnetic coupling between different stator modules.
specific Embodiment approach 3
[0029] Embodiment 3: This embodiment further explains Embodiment 1, m≥3, and the concentrated winding 5 is a concentrated winding of three phases or more. The number of winding phases is determined by the number of stator modules.
[0030] By adopting the multi-phase winding, the fault-tolerant operation performance of the modular multi-phase permanent magnet synchronous motor based on the single-layer and double-layer hybrid winding can be improved.
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