Home /Research /Design and control of a novel spherical permanent magnet actuator with three degrees of freedom
MANIPULATION

Design and control of a novel spherical permanent magnet actuator with three degrees of freedom

W. Wang, Jiabin Wang, G.W. Jewell, D. Howe

Year
2003
Citations
159

Abstract

The paper describes the design and control of a new version of a spherical permanent magnet actuator, which is capable of three degrees of freedom and a high specific torque. Based on an analytical magnetic field distribution, the torque vector and back-emf are derived in closed forms. An optimal design procedure is proposed to achieve maximum output torque or maximum acceleration for a given payload. The control of the actuator, whose dynamics are similar to those of robotic manipulators, is facilitated by the establishment of a complete actuation system model and the application of the computed torque control law. The validity of the analysis and design techniques, and the effectiveness of the control strategy, are confirmed by measurements.

Keywords

Control theory (sociology)TorqueActuatorPayload (computing)MagnetDegrees of freedom (physics and chemistry)Control engineeringRotary actuatorComputer scienceEngineering

Related papers

Browse all MANIPULATION papers