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Multiple-Goal Kinematic Optimization of 2 DOF Micro Parallel Robots

Sergiu‐Dan Stan, Vistrian Mătieș, Radu Bălan

Year
2007
Citations
3

Abstract

The paper is aimed at presenting a study on the optimization of the Five-bar and Bipod micro parallel robots, which comprises two-degree-of-freedom (DOF) micro parallel robots with constant and variable struts. The robot workspace is characterized and the inverse kinematics equation is obtained. In the paper, design optimization is implemented with Genetic Algorithms (GA) for optimization considering transmission quality index, design space and workspace. Here, intended to show the advantages of using the GA, we applied it to a multicriteria optimization problem of 2 DOF micro parallel robots. Genetic algorithms (GA) are so far generally the best and most robust kind of evolutionary algorithms. A GA has a number of advantages. It can quickly scan a vast solution set. Bad proposals do not affect the end solution negatively as they are simply discarded. The obtained results have shown that the use of GA in such kind of optimization problem enhances the quality of the optimization outcome, providing a better and more realistic support for the decision maker.

Keywords

WorkspaceInverse kinematicsRobotGenetic algorithmComputer scienceParallel manipulatorKinematicsOptimization problemMathematical optimizationSet (abstract data type)

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