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Torque density improvement of transverse-flux dual rotor machine for power-split hybrid electric vehicle application

机译:功率分流混合电动汽车应用的横向磁通双转子电机的扭矩密度提高

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A new brushless compound-structure transverse-flux permanent magnet synchronous machine (CS-TFPMSM) is proposed in this paper. It can help the hybrid electric vehicles (HEVs) to fulfill power split and adjust the torque and speed from the internal combustion engine (ICE). As the key component of the CS-TFPMSM, the transverse-flux dual rotor machine (TFDRM) originates from the transverse-flux machine (TFM). The TFDRM can keep the principle of TFM unchanged, and fulfill the elimination of brushes. The operation principle is described; and the expression for the torque density is deduced. Based on that, the characteristics of the TFDRM are investigated. Because of the three-dimensional (3D) complicated magnetic circuit, the 3D finite element method (FEM) is used to simulate the performances of the TFDRM. The influences of main geometry parameters, such as the pole-pair number, the length of the outer/inner air gap, the sizes of the permanent magnets, and so on, on the torque density are simulated with the 3D FEM. The methods to enhance the torque density are discussed.
机译:提出了一种新型的无刷复合结构横向磁通永磁同步电机(CS-TFPMSM)。它可以帮助混合动力电动汽车(HEV)完成功率分配,并调整内燃机(ICE)的扭矩和速度。作为CS-TFPMSM的关键组件,横向磁通双转子电机(TFDRM)源自横向磁通电机(TFM)。 TFDRM可以保持TFM原理不变,并且可以消除电刷。描述其工作原理;推导出转矩密度的表达式。在此基础上,研究了TFDRM的特点。由于三维(3D)复杂的磁路,因此使用3D有限元方法(FEM)来模拟TFDRM的性能。使用3D FEM模拟了磁极对数,外部/内部气隙的长度,永磁体的尺寸等主要几何参数对扭矩密度的影响。讨论了提高扭矩密度的方法。

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