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Torque control of a spherical machine with variable pole pitch

机译:变极距球机的转矩控制

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Torque control of a spherical machine combining three degrees of freedom in motion is presented. This drive can be used for machine tools and robots to replace conventional rotating or linear machines which are connected in series or parallel. The proposed motor consists of a rotor sphere with permanent magnets and an outer stator core casing with 96 stator poles and windings. The currents of the stator coils have to be controlled individually because the pole pitch can vary continuously during operation. A unique solution to calculate all 96 current commands to produce the desired torque does not exist. Different control algorithms are presented on how to choose the individual phase currents to reach the required torque vector. Simulations show satisfying results which are confirmed by experiments. In addition, the controllability of three-dimensional (3D) motion is demonstrated.
机译:提出了结合三个运动自由度的球形机械的转矩控制。该驱动器可用于机床和机器人,以代替串联或并联连接的常规旋转或线性机器。所提出的电动机包括一个带有永磁体的转子球和一个带有96个定子极和绕组的定子铁心外壳。定子线圈的电流必须单独控制,因为极距在运行过程中会连续变化。不存在用于计算所有96个电流命令以产生所需转矩的独特解决方案。针对如何选择各个相电流以达到所需的转矩矢量,提出了不同的控制算法。仿真显示令人满意的结果,该结果已通过实验证实。此外,还演示了三维(3D)运动的可控性。

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