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A Planar Actuator with a Small Mover Traveling Over Large Yaw and Translational Displacements

机译:带有小推杆的平面致动器,可在较大的偏航角和平移位移上移动

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We report a three-degree-of-freedom actuator with a small mover that can travel over large displacements on a plane. Such direct drives with multiple degrees of freedom are an emerging technology because of their high performance. Previously, we designed planar actuators capable of generating thrusts anywhere in the movement area and successfully demonstrated the two-dimensional drive of the actuator in the translational direction. However, during translational motion control on the plane, a slight oscillatory yaw motion occurred. Thrusts and torques of the actuator are proportional to the $d$- and $q$ -axis currents, which generate flux densities with 90 $^circ$ and 0$^circ$ phase-leads, respectively, from the flux density generated by the permanent magnets of the mover. Therefore, the thrusts and torques can be generated independently by the $d$ - and $q$-axis current control. In our new design, we use a decoupling control on the planar actuator to control both yaw and translational motions on the plane. We describe the experimentally obtained drive characteristics of this actuator. The experimental results indicate that the mover can travel over large yaw and translational displacements independently and simultaneously with relatively precise positioning and response. Thus, we have demonstrated satisfactory performance of a planar actuator with three degrees of freedom.
机译:我们报告了带有小动子的三自由度执行器,该动子可以在平面上以较大的位移行进。这种具有多个自由度的直接驱动器由于其高性能而成为新兴技术。以前,我们设计了能够在运动区域中任何位置产生推力的平面致动器,并成功演示了致动器在平移方向上的二维驱动。但是,在飞机上进行平移运动控制期间,发生了轻微的振荡偏航运动。执行器的推力和转矩与$ d $和$ q $轴电流成正比,分别从由动子的永磁体。因此,可以通过$ d $-和$ q $轴电流控制独立地产生推力和转矩。在我们的新设计中,我们在平面执行器上使用去耦控制,以控制平面上的偏航和平移运动。我们描述了该执行器的实验获得的驱动特性。实验结果表明,动子可以独立地在较大的偏航和平移位移中行驶,并且同时具有相对精确的定位和响应。因此,我们证明了具有三个自由度的平面致动器的令人满意的性能。

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