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Simulation and analysis of a novel PM spherical 3-DOF actuator with E-shaped stator and blade-shaped rotor structure

机译:新型E型定子和叶片转子结构的球形PM球形3自由度执行器的仿真与分析。

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摘要

In this paper, a new structure for the stator and the rotor of a 3-Dergree Of Freedom (3-DOF) actuator has been presented. According to the different applications defined for these actuators, increasing the rotation angle, improving the efficiency and increasing the output torque and also decreasing the volume and mass of the model is one of the most important challenges. In blade-shaped rotors, unlike common structures, laminating the ferromagnetic core is possible. Laminating will decrease switching losses and increase efficiency in higher frequencies. Rotor cores are placed as blades around the hypothetical cylindrical axis so that their combination forms the final spherical shape. Creating a 3d structure this way, will decrease the final weight of the actuator. In the stator a rotary structure of semi E-shaped cores are placed next to each other to form the hemisphere bed for the rotor movement. The designed actuator with the proposed structure, has decreased weight and smaller losses because of the laminating process and the removal of the integration of the stator and the rotor cores. The results of the simulations show that the rotor rotation angle and the effective output torque of the actuator have improved relative to other similar structures.
机译:在本文中,提出了一种三自由度(3-DOF)执行器的定子和转子的新结构。根据为这些执行器定义的不同应用,增加旋转角度,提高效率和增加输出转矩以及减小模型的体积和质量是最重要的挑战之一。在叶片形转子中,与普通结构不同,可以层叠铁磁芯。层压将减少开关损耗并提高较高频率下的效率。转子铁心作为叶片围绕假设的圆柱轴放置,以便它们的组合形成最终的球形。以这种方式创建3d结构将减少执行器的最终重量。在定子中,半E形铁心的旋转结构彼此相邻放置,以形成用于转子运动的半球床。具有所提出的结构的所设计的致动器由于层压过程以及消除了定子和转子芯的集成而减小了重量并减小了损耗。仿真结果表明,与其他类似结构相比,执行器的转子旋转角和有效输出转矩有所提高。

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