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MANIPULATION

TOWARD THE DESIGN AND SIMULATION OF A NEW GENERATION OF RECONFIGURABLE SPACE MANIPULATORS USING TELESCOPING PASSIVE JOINTS

Paul D. N. Hebert, Charles Tatossian, M. Caims, Farhad Aghili, Kourosh Parsa, Alexei A. Morozov

Year
2007
Citations
4

Abstract

This work presents the analysis, simulation, design, and assembly of a three-degree-of-freedom reconfigurable robotic arm. Unlike conventional reconfigurable robots, the final design illustrated in this paper does not achieve re-configurability through modular joints; instead, it is equipped with passive telescopic joints. These passive joints allow the robotic arm to change its Denavit-Hartenberg parameters via an innovative braking system. The robotic arm itself presents many advantages; not only is it versatile to perform various tasks, but it can be packed into a small volume, as usually required for launch in space applications.

Keywords

Telescoping seriesModular designRobotic armRobotComputer scienceWork (physics)Control engineeringDegrees of freedom (physics and chemistry)SimulationEngineering

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