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Isotropic design optimization of robotic manipulators using a genetic algorithm method

Shiva Khatami, Farrokh Sassani

Year
2003
Citations
30

Abstract

In this paper, the kinematic isotropy has been considered as the performance evaluation criterion for optimal design of robotic manipulators. The global isotropy index (or GII) has been used as the measure of isotropy, which is based on the robot's behavior in its entire workspace. A "genetic algorithm" has been developed to solve the minimax optimization formulation of robot design in order to find the optimal design parameters such as link lengths of the best isotropic robot configurations at optimal working points of the end-effector. The algorithm has been implemented to optimize globally the throughout of the whole robot workspace. The method is demonstrated for 2-DOF robotic manipulators.

Keywords

WorkspaceIsotropyMinimaxGenetic algorithmKinematicsRobotRobot end effectorOptimal designRobot manipulatorComputer science

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