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Optimization design of stator harmonic windings in brushless synchronous machine excited with double-harmonic-windings

机译:双谐波绕组激励的无刷同步电机定子谐波绕组的优化设计

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Harmonic brushless excitation synchronous machine does not rely on permanent magnetic material, which also can be excited without brush and slip rings. The air-gap magnetic fields are easy to be adjusted. However, the tooth harmonics in 12-slots machine are relatively big. In order to reduce the tooth harmonics content, and improve the excitation performance and efficiency of this kind of machine, a dual-harmonic-winding brushless excitation synchronous machine is presented in this paper. Five different stator harmonic winding distributions are analyzed and the corresponding harmonic potentials are calculated, respectively. Results of the calculations show that in the machine with 18-slots, the rotor harmonic potential produced by the stator harmonic windings with same-sequence arrangement is largest. These structures are suitable for this kind of machine. The results of Finite Element Analysis verified the correctness and effectiveness of the structure optimization and magnetic fields calculations of the machine.
机译:谐波无刷励磁同步电机不依靠永磁材料,也可以在没有电刷和滑环的情况下进行励磁。气隙磁场易于调节。但是,十二槽机的齿谐波比较大。为了降低齿谐波含量,提高励磁性能和效率,提出了一种双谐波绕组无刷励磁同步电机。分析了五种不同的定子谐波绕组分布,并分别计算了相应的谐波电位。计算结果表明,在18槽电机中,由等序排列的定子谐波绕组产生的转子谐波电势最大。这些结构适用于此类机器。有限元分析的结果验证了机器结构优化和磁场计算的正确性和有效性。

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