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Visual servoing control of a 9-DoF WMRA to perform ADL tasks

William Garrett Pence, Fabian Farelo, Redwan Alqasemi, Yu Sun, Rajiv Dubey

Year
2012
Citations
16

Abstract

The wheelchair-mounted robotic arm (WMRA) is a mobile manipulator that consists of a 7-DoF robotic arm and a 2-DoF power wheelchair platform. Previous works combined mobility and manipulation control using weighted optimization for dual-trajectory tracking [7]. In this work, we present an image-based visual servoing (IBVS) approach with scale-invariant feature transform (SIFT) using an eye-in-hand monocular camera for combined control of mobility and manipulation for the 9-DoF WMRA system to execute activities of daily living (ADL) autonomously. We also present results of the physical implementation with a simple “Go to and Pick Up” task and the “Go to and Open the Door” task previously published in simulation, using IBVS to aid the task performance.

Keywords

Visual servoingComputer scienceArtificial intelligenceScale-invariant feature transformComputer visionTask (project management)Robotic armWheelchairTrajectoryMonocular

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