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Analysis Accuracy in Positioning Calculation for Three-Degree-of-Freedom Spherical Actuator

H. Fusayasu, Yuji Masuyama, Katsuhiro Hirata, Noboru Niguchi, Kazuaki Takahara

Year
2021
Citations
12

Abstract

Multi-degree-of-freedom (multi-DOF) spherical actuators have been developed for the fields of robotics and industrial machinery. We have proposed an outer-rotor-type three-DOF spherical actuator that can realize a high torque density. Each coil input current is calculated using a torque-generating equation based on the torque constant matrix. Although a control method to calculate the current has already been proposed, the analysis accuracy of the torque model is not sufficiently examined for a precision robot that requires a positioning accuracy of 1 mm or less. To apply our three-DOF spherical actuator to such a precision robot, we have developed a dynamic analysis method that directly positions the robot. In this article, we report on the factors that affect the analysis accuracy and accuracy improvement.

Keywords

TorqueActuatorControl theory (sociology)Rotor (electric)Computer scienceRobotElectromagnetic coilRoboticsArtificial intelligencePhysics

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