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MANIPULATION

Kinematic Robustness of Manipulating Systems

Alexandra M. Galhano, J. A. Tenreiro Machado

Year
2002
Citations
2

Abstract

Present day mechanical manipulators have poor performances when compared with the human arm. In fact, joint-driven manipulators are not efficient due to the high actuator requirements imposed by the transients of the operational tasks. Muscle-actuated arms are superior because the anatomic levers adapt the manipulating exigencies to the driving linear actuators. The kinematic analysis of these systems highlights its main properties and constitutes a step towards the design of new mechanical biological-like. robotic structures adopting linear actuators replacing the standard rotational joint-driving motor systems.

Keywords

KinematicsActuatorRobustness (evolution)Computer scienceControl theory (sociology)Joint (building)Mechanical systemLinear actuatorControl engineeringRobotic hand

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