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Simulation results of a hexahedron-octahedron based spherical stepping motor

机译:基于六面体-八面体的球形步进电机的仿真结果

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The simulation results of a novel stepping motor based on a pair of a regular hexahedron and a regular octahedron (call "6-8 spherical stepping motor" afterward) are presented. The 3D electromagnet and motion coupled simulation program "Magnet 6" is used for the simulation. As the conditions of simulation, the excitation current and frequency is 1 A and 5.3 Hz, respectively. Three phase sinusoidal excitation currents are applied to two pairs of three coils of the stator individually at 120 deg intervals. The simulation results show that the rotor rotates along the rotating magnetic field and the output torque is 0.04 Nm. The simulation results prove the correctness of the 6-8 spherical motor driving method. The developed 6-8 spherical stepping motor is air-core type without back yoke for avoiding the cogging torque. When using iron core with back yoke, the proposed motor will be a high-torque spherical motor. The 6-8 spherical stepping motor was tested and the experimental results were compared with the simulation results. Then, the simulation program was used for optimum design of the 6-8 spherical stepping motor.
机译:给出了基于一对正六面体和正八面体的新型步进电机的仿真结果(以下称为“ 6-8球形步进电机”)。 3D电磁铁和运动耦合的仿真程序“ Magnet 6”用于仿真。作为仿真条件,励磁电流和频率分别为1 A和5.3 Hz。三相正弦励磁电流以120度的间隔分别施加到定子的两对三个线圈。仿真结果表明,转子沿旋转磁场旋转,输出转矩为0.04 Nm。仿真结果证明了6-8球形电动机驱动方法的正确性。研发的6-8球形步进电机为空心型,没有后轭,可避免齿槽转矩。当使用带有后轭铁芯时,建议的电动机将是高转矩球形电动机。对6-8球形步进电机进行了测试,并将实验结果与仿真结果进行了比较。然后,将仿真程序用于6-8球形步进电机的优化设计。

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