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Optimized binary modular reconfigurable robotic devices

Moustapha Hafez, Matthew D. Lichter, Steven Dubowsky

Year
2003
Citations
15

Abstract

Binary robotic devices with large numbers of degrees of freedom have been proposed by a number of researchers. However, experimental implementations of these concepts have been built with conventional components. These physical systems are heavy, complex, and far from being practical devices. In this paper, a lightweight, compliant mechanism driven by optimized magnet-coil actuators is proposed and developed as an element for modular hyper-redundant robotic systems. Such elements could be used in a number of applications and would replace conventional, complex, and heavy components. The device has a parallel kinematics structure. Its binary actuation simplifies its control architecture. Analytical and experimental results for a practical prototype system are presented.

Keywords

Modular designActuatorComputer scienceBinary numberKinematicsDegrees of freedom (physics and chemistry)RobotSelf-reconfiguring modular robotControl engineeringEmbedded system

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