A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty

This paper aims to propose a multi-period multi-product supply chain network design which takes the sustainability dimensions into consideration in both strategic and operational decisions. Several critical issues in the planning of supply chain networks are considered in the model such as the capac...

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Main Author: Naeme Zarrinpoor
Format: Article
Language:English
Published: Kharazmi University 2019-11-01
Series:International Journal of Supply and Operations Management
Subjects:
Online Access:http://www.ijsom.com/article_2800_88a2cdfa36db49c80c031d18d788e0a9.pdf
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spelling doaj-1f1db00a58ac41dca67c0eadeba6594c2021-09-29T04:17:35ZengKharazmi UniversityInternational Journal of Supply and Operations Management2383-13592383-25252019-11-016434935910.22034/2019.4.52800A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of UncertaintyNaeme Zarrinpoor0Department of Industrial Engineering, Shiraz University of Technology, Shiraz, IranThis paper aims to propose a multi-period multi-product supply chain network design which takes the sustainability dimensions into consideration in both strategic and operational decisions. Several critical issues in the planning of supply chain networks are considered in the model such as the capacity of facilities, the minimum acceptable rate for the social score of manufacturing plants and distribution centers, the maximum coverage radius, and the limited budget availability. In order to obtain an effective and efficient network design, different categories of uncertainty are also considered, including the provider-side uncertainty reflected in the capacity of constructed facilities, as well as the economic, environmental, social, and technical parameters, the receiver-side uncertainty reflected in the demand, and the in-between uncertainty reflected in the transportation costs and the maximum coverage radius. To deal with different sources of uncertainty in the concerned problem, a chance constrained fuzzy programming approach is employed. Several test problems are used to analyze the characteristics of the proposed problem. The computational results can help decision makers to design supply chain networks from economic, environmental, and social perspectives.http://www.ijsom.com/article_2800_88a2cdfa36db49c80c031d18d788e0a9.pdfsupply chain managementnetwork designsustainabilityuncertaintycoverage radiuschance constraint fuzzy programming
collection DOAJ
language English
format Article
sources DOAJ
author Naeme Zarrinpoor
spellingShingle Naeme Zarrinpoor
A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty
International Journal of Supply and Operations Management
supply chain management
network design
sustainability
uncertainty
coverage radius
chance constraint fuzzy programming
author_facet Naeme Zarrinpoor
author_sort Naeme Zarrinpoor
title A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty
title_short A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty
title_full A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty
title_fullStr A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty
title_full_unstemmed A Chance-constrained Fuzzy Programming Approach for a Sustainable Supply Chain Network Design under Multiple Sources of Uncertainty
title_sort chance-constrained fuzzy programming approach for a sustainable supply chain network design under multiple sources of uncertainty
publisher Kharazmi University
series International Journal of Supply and Operations Management
issn 2383-1359
2383-2525
publishDate 2019-11-01
description This paper aims to propose a multi-period multi-product supply chain network design which takes the sustainability dimensions into consideration in both strategic and operational decisions. Several critical issues in the planning of supply chain networks are considered in the model such as the capacity of facilities, the minimum acceptable rate for the social score of manufacturing plants and distribution centers, the maximum coverage radius, and the limited budget availability. In order to obtain an effective and efficient network design, different categories of uncertainty are also considered, including the provider-side uncertainty reflected in the capacity of constructed facilities, as well as the economic, environmental, social, and technical parameters, the receiver-side uncertainty reflected in the demand, and the in-between uncertainty reflected in the transportation costs and the maximum coverage radius. To deal with different sources of uncertainty in the concerned problem, a chance constrained fuzzy programming approach is employed. Several test problems are used to analyze the characteristics of the proposed problem. The computational results can help decision makers to design supply chain networks from economic, environmental, and social perspectives.
topic supply chain management
network design
sustainability
uncertainty
coverage radius
chance constraint fuzzy programming
url http://www.ijsom.com/article_2800_88a2cdfa36db49c80c031d18d788e0a9.pdf
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