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Optimized dual-trajectory tracking control of a 9-DoF WMRA system for ADL tasks

Fabian Farelo, Redwan Alqasemi, Rajiv Dubey

Year
2010
Citations
20

Abstract

Wheelchair-bound persons with upper limb motion limitations can utilize a wheelchair-mounted robotic arm (WMRA) to perform activities of daily living (ADL) tasks. In this paper, an optimized control of our 9-DoF system, consisting of a 7-DoF robotic arm and a 2-DoF power wheelchair, is achieved. For effective ADL task execution, positioning the end-effector with proper wheelchair orientation was optimized as part of the control algorithm. Separate wheelchair and end-effector trajectories were simultaneously followed to execute a “Go To and Open the Door” task. The control methodology, implementation and test results in simulation are presented in this paper.

Keywords

WheelchairTask (project management)TrajectoryComputer scienceRobot end effectorTracking (education)SimulationMotion controlRobotDual (grammatical number)

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