Title
Robust Design Of A Robot Gripper Mechanism Using New Hybrid Grasshopper Optimization Algorithm
Abstract
Structural design and optimization are important topics for the control and design of industrial robots. The motivation behind this research is to design a robot gripper mechanism. To explore robust design of the robot gripper mechanism, a new optimization approach based on a grasshopper optimization algorithm and Nelder-Mead algorithm is developed for requiring a fast and accurate solution. Additionally, a vehicle side crash design problem, a multi-clutch disc problem, and a manufacturing optimization problem are solved with the developed method to show the advantages of the new technique (HGOANM). Both engineering comparisons and production problem results in which HGOANM is applied are compared with the latest optimization techniques in the literature. The results of the problems resolved in this article reveal that the developed HGOANM is an essential optimization approach by solving real-world engineering problems quickly and accurately.
Year
DOI
Venue
2021
10.1111/exsy.12666
EXPERT SYSTEMS
Keywords
DocType
Volume
grasshopper optimization algorithm, hybrid algorithm, multi&#8208, clutch disc, Nelder Mead, robot gripper mechanism, robust design, vehicle crash
Journal
38
Issue
ISSN
Citations 
3
0266-4720
1
PageRank 
References 
Authors
0.35
0
5
Name
Order
Citations
PageRank
Betül Sultan Yildiz130.72
Nantiwat Pholdee2398.08
Sujin Bureerat310.69
Ali Riza Yildiz4293.00
Sadiq M. Sait528836.11