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  4. Solving The Manufacturing Cell Design Problem Through Binary Cat Swarm Optimization With Dynamic Mixture Ratios
 
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Solving The Manufacturing Cell Design Problem Through Binary Cat Swarm Optimization With Dynamic Mixture Ratios

Journal
Computational Intelligence and Neuroscience
Date Issued
2019-02-14
Author(s)
Ricardo Soto
Broderick Crawford
Angelo Aste Toledo
Hanns de la Fuente-Mella
Carlos Castro
Fernando Paredes
Olivares, Rodrigo  
Facultad de Ingeniería  
DOI
10.1155/2019/4787856
WoS ID
WOS:000459667300001
Abstract
In this research, we present a Binary Cat Swarm Optimization for solving the Manufacturing Cell Design Problem (MCDP). This problem divides an industrial production plant into a certain number of cells. Each cell contains machines with similar types of processes or part families. The goal is to identify a cell organization in such a way that the transportation of the different parts between cells is minimized. The organization of these cells is performed through Cat Swarm Optimization, which is a recent swarm metaheuristic technique based on the behavior of cats. In that technique, cats have two modes of behavior: seeking mode and tracing mode, selected from a mixture ratio. For experimental purposes, a version of the Autonomous Search algorithm was developed with dynamic mixture ratios. The experimental results for both normal Binary Cat Swarm Optimization (BCSO) and Autonomous Search BCSO reach all global optimums, both for a set of 90 instances with known optima, and for a set of 35 new instances with 13 known optima.
Subjects

Computer Science

Mathematical And Comp...

Mathematics

Medicine

Neurosciences

Neuroscience

OCDE Subjects

Medical And Health Sc...

Quartile (Date Issued)
Q2
License
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