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Synthesis of four-bar linkage motion generation using optimization algorithms
Author(s)
Phukaokaew, Wisanu
Sleesongsom, Suwin
Panagant, Natee
Bureerat, Sujin
Date Issued
July 1, 2019
Type
Article
Abstract
Motion generation of a four-bar linkage is a type of mechanism synthesis that has a wide range of applications such as a pick-and-place operation in manufacturing. In this research, the use of meta-heuristics for motion generation of a four-bar linkage is demonstrated. Three problems of motion generation were posed as a constrained optimization probably using the weighted sum technique to handle two types of tracking errors. A simple penalty function technique was used to deal with design constraints while three meta-heuristics including differential evolution (DE), self-adaptive differential evolution (JADE) and teaching learning based optimization (TLBO) were employed to solve the problems. Comparative results and the effect of the constraint handling technique are illustrated and discussed.
Citation
Advances in Computational Design, 4(3), 197-210, 2019
