Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells

This article analyses the output rate in two-machine flexible robotic manufacturing cells. The flexible CNC machines in this manufacturing cell can process different operations. The manufactured parts in the cell are identical and it is assumed that different operations are required to manufacture e...

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Main Authors: Mohammad Fathian, Isa Nakhai Kamalabadi, Mehdi Heydari, Hiwa Farughi, Foruzan Naseri
Format: Article
Language:English
Published: SAGE Publishing 2013-03-01
Series:International Journal of Advanced Robotic Systems
Online Access:https://doi.org/10.5772/56051
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spelling doaj-debb1390e7604fee8f7ea3b5c9a0c62b2020-11-25T03:34:12ZengSAGE PublishingInternational Journal of Advanced Robotic Systems1729-88142013-03-011010.5772/5605110.5772_56051Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing CellsMohammad Fathian0Isa Nakhai Kamalabadi1Mehdi Heydari2Hiwa Farughi3Foruzan Naseri4 Industrial Engineering, Iran University of Science and Technology, Tehran, Iran Industrial Engineering, Tarbiat Modares University, Tehran, Iran Industrial Engineering, Iran University of Science and Technology, Tehran, Iran Industrial Engineering, Iran University of Science and Technology, Tehran, Iran Industrial Engineering, University of Kurdistan, Sanandaj, IranThis article analyses the output rate in two-machine flexible robotic manufacturing cells. The flexible CNC machines in this manufacturing cell can process different operations. The manufactured parts in the cell are identical and it is assumed that different operations are required to manufacture each part. Moreover, loading/unloading time of a part by the robot (ε), robot movement time between the machines and input and output areas (σ), and processing time of the j th part on the machines (t j ) are considered to be fixed. The main objective of this article is to minimize cycle time in order to increase the output rate of the manufacturing cell. To achieve this goal, it is important to optimally assign operations required for manufacturing a part to each machine and to determine the optimal robot moves sequence. Accordingly, existing feasible movement policies in the cell and their cycle times have been reviewed, and then these policies have been considered in a new machine layout and their cycle times have been calculated based on the new robot moves sequence. Afterwards, a mathematical model has been presented to select optimal cycle time in the manufacturing cell and this model has been solved by a branch and bound exact algorithm; since the mathematical model is non-linear and the optimal solution cannot be obtained, two metaheuristic algorithms—genetic and simulated annealing algorithms—have also been proposed to solve the model and their results have been compared.https://doi.org/10.5772/56051
collection DOAJ
language English
format Article
sources DOAJ
author Mohammad Fathian
Isa Nakhai Kamalabadi
Mehdi Heydari
Hiwa Farughi
Foruzan Naseri
spellingShingle Mohammad Fathian
Isa Nakhai Kamalabadi
Mehdi Heydari
Hiwa Farughi
Foruzan Naseri
Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells
International Journal of Advanced Robotic Systems
author_facet Mohammad Fathian
Isa Nakhai Kamalabadi
Mehdi Heydari
Hiwa Farughi
Foruzan Naseri
author_sort Mohammad Fathian
title Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells
title_short Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells
title_full Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells
title_fullStr Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells
title_full_unstemmed Applying Metaheuristic Algorithms for Output Rate Analysis in Two-Machine Robotic Manufacturing Cells
title_sort applying metaheuristic algorithms for output rate analysis in two-machine robotic manufacturing cells
publisher SAGE Publishing
series International Journal of Advanced Robotic Systems
issn 1729-8814
publishDate 2013-03-01
description This article analyses the output rate in two-machine flexible robotic manufacturing cells. The flexible CNC machines in this manufacturing cell can process different operations. The manufactured parts in the cell are identical and it is assumed that different operations are required to manufacture each part. Moreover, loading/unloading time of a part by the robot (ε), robot movement time between the machines and input and output areas (σ), and processing time of the j th part on the machines (t j ) are considered to be fixed. The main objective of this article is to minimize cycle time in order to increase the output rate of the manufacturing cell. To achieve this goal, it is important to optimally assign operations required for manufacturing a part to each machine and to determine the optimal robot moves sequence. Accordingly, existing feasible movement policies in the cell and their cycle times have been reviewed, and then these policies have been considered in a new machine layout and their cycle times have been calculated based on the new robot moves sequence. Afterwards, a mathematical model has been presented to select optimal cycle time in the manufacturing cell and this model has been solved by a branch and bound exact algorithm; since the mathematical model is non-linear and the optimal solution cannot be obtained, two metaheuristic algorithms—genetic and simulated annealing algorithms—have also been proposed to solve the model and their results have been compared.
url https://doi.org/10.5772/56051
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