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ProVAR assistive robot system architecture

H. F. Machiel Van der Loos, J.J. Wagner, N. Smaby, Kyung Won Chang, Omar Correa Madrigal, Larry Leifer, Oussama Khatib

Year
2003
Citations
63

Abstract

This paper describes the implementation of a robot control architecture designed to combine a manipulation task design environment with a motion controller that uses the operational space formulation to define and implement arm trajectories and object manipulation. The ProVAR desktop manipulation system is an assistive robot for individuals with a severe physical disability, such as quadriplegia as a result of a high-level spinal cord injury. ProVAR allows non-technical operators access to the robot's capabilities through a direct-manipulation simulation/preview user interface. The novel interface concept is based on two built-in characters to play the roles of helpful consultant and down-to-earth robot arm. This team-based interface concept was chosen to maximize user performance and comfort in controlling the inherently complex mechatronic technology. This paper describes our design decisions and rationale.

Keywords

RobotInterface (matter)Computer scienceHuman–computer interactionMechatronicsTask (project management)Object (grammar)User interfaceArchitectureRobot control

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