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An active connection mechanism for modular self-reconfigurable robotic systems based on physical latching

Alexander Sproewitz, Masoud Asadpour, Yvan Bourquin, Auke Jan Ijspeert

Year
2008
Citations
42

Abstract

This article presents a robust and heavy duty physical latching connection mechanism, which can be actuated with DC motors to actively connect and disconnect modular robot units. The special requirements include a lightweight and simple construction providing an active, strong, hermaphrodite, completely retractable connection mechanism with a 90 degree symmetry <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">1</sup> and a no-energy consumption in the locked state. The mechanism volume is kept small to fit multiple copies into a single modular robot unit and to be used on as many faces of the robot unit as possible. This way several different lattice like modular robot structures are possible. The large selection for dock-able connection positions will likely simplify self-reconfiguration strategies. Tests with the implemented mechanism demonstrate its applicative potential for self-reconfiguring modular robots.

Keywords

Modular designSelf-reconfiguring modular robotRobotComputer scienceControl reconfigurationMechanism (biology)Connection (principal bundle)Embedded systemMobile robotArtificial intelligence

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