A novel hybrid method using fuzzy decision making and multi-objective programming for sustainable-reliable supplier selection in two-echelon supply chain design

Recently, large companies have shown a growing tendency to enhance the reliability and sustainability of their supply chains to increase customers’ satisfaction in terms of on-time fulfillment of demands and to be compatible with environmental regulations. Therefore, finding the best approaches to a...

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Vydané v:Journal of cleaner production Ročník 250; s. 119517
Hlavní autori: Tirkolaee, Erfan Babaee, Mardani, Abbas, Dashtian, Zahra, Soltani, Mehdi, Weber, Gerhard-Wilhelm
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier Ltd 20.03.2020
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ISSN:0959-6526, 1879-1786
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Abstract Recently, large companies have shown a growing tendency to enhance the reliability and sustainability of their supply chains to increase customers’ satisfaction in terms of on-time fulfillment of demands and to be compatible with environmental regulations. Therefore, finding the best approaches to achieve companies’ goals is a crucial concern in supply chain management, and the majority of organizations prefer to cooperate with reliable and sustainable companies. In designing a supply chain, the supplier selection problem, order size identification, and order allocation are midterm decisions that are needed to be made separately. To this end, three levels of the supply chain, i.e., suppliers, central warehouses, and wholesalers are considered. In the first level, to address the sustainable supplier selection problem, a novel hybrid approach based on the fuzzy logic is implemented. This approach applies the Fuzzy Analytic Network Process (FANP) method to ranking criteria and sub-criteria, the fuzzy Decision-Making Trial and Evaluation Laboratory (DEMATEL) is applied to identification of the relationships among the main criteria, and the fuzzy Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS) to prioritizing the suppliers. After prioritizing the suppliers, the obtained weights are considered as the input of a tri-objective model designed to optimize the proposed supply chain. The objectives are minimization of the total cost of the chain, maximization of the weighted value of products by taking the account of suppliers’ priorities, and maximization of the reliability of the supply chain. Weighted Goal Programming (WGP) method is then used to deal with multi-objectiveness. To assess the applicability of the suggested methodology, a case study of the lamp supply chain was considered and solved using GAMS/CPLEX solver and optimal policies based on suppliers’ sustainability. The reliability of the supply chain was tested, and sensitivity analyses were also performed on the main parameters of the model.
AbstractList Recently, large companies have shown a growing tendency to enhance the reliability and sustainability of their supply chains to increase customers’ satisfaction in terms of on-time fulfillment of demands and to be compatible with environmental regulations. Therefore, finding the best approaches to achieve companies’ goals is a crucial concern in supply chain management, and the majority of organizations prefer to cooperate with reliable and sustainable companies. In designing a supply chain, the supplier selection problem, order size identification, and order allocation are midterm decisions that are needed to be made separately. To this end, three levels of the supply chain, i.e., suppliers, central warehouses, and wholesalers are considered. In the first level, to address the sustainable supplier selection problem, a novel hybrid approach based on the fuzzy logic is implemented. This approach applies the Fuzzy Analytic Network Process (FANP) method to ranking criteria and sub-criteria, the fuzzy Decision-Making Trial and Evaluation Laboratory (DEMATEL) is applied to identification of the relationships among the main criteria, and the fuzzy Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS) to prioritizing the suppliers. After prioritizing the suppliers, the obtained weights are considered as the input of a tri-objective model designed to optimize the proposed supply chain. The objectives are minimization of the total cost of the chain, maximization of the weighted value of products by taking the account of suppliers’ priorities, and maximization of the reliability of the supply chain. Weighted Goal Programming (WGP) method is then used to deal with multi-objectiveness. To assess the applicability of the suggested methodology, a case study of the lamp supply chain was considered and solved using GAMS/CPLEX solver and optimal policies based on suppliers’ sustainability. The reliability of the supply chain was tested, and sensitivity analyses were also performed on the main parameters of the model.
ArticleNumber 119517
Author Weber, Gerhard-Wilhelm
Soltani, Mehdi
Mardani, Abbas
Tirkolaee, Erfan Babaee
Dashtian, Zahra
Author_xml – sequence: 1
  givenname: Erfan Babaee
  surname: Tirkolaee
  fullname: Tirkolaee, Erfan Babaee
  email: e.babaee@ustmb.ac.ir
  organization: Department of Industrial Engineering, Mazandaran University of Science and Technology, Iran
– sequence: 2
  givenname: Abbas
  surname: Mardani
  fullname: Mardani, Abbas
  email: abbas.mardani@tdtu.edu.vn
  organization: Informetrics Research Group, Ton Duc Thang University, Ho Chi Minh City, 758307, Viet Nam
– sequence: 3
  givenname: Zahra
  surname: Dashtian
  fullname: Dashtian, Zahra
  email: z.dashtian95@gmail.com
  organization: Department of Industrial and Mechanical Engineering, Qazvin Islamic Azad University, Iran
– sequence: 4
  givenname: Mehdi
  surname: Soltani
  fullname: Soltani, Mehdi
  email: mehdisoltani618@gmail.com
  organization: Department of Industrial and Mechanical Engineering, Qazvin Islamic Azad University, Iran
– sequence: 5
  givenname: Gerhard-Wilhelm
  surname: Weber
  fullname: Weber, Gerhard-Wilhelm
  email: gerhard.weber@put.poznan.pl
  organization: Faculty of Engineering Management, Poznan University of Technology, Poznan, Poland
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ISSN 0959-6526
IngestDate Sat Sep 27 19:53:00 EDT 2025
Tue Nov 18 21:08:18 EST 2025
Sat Nov 29 07:07:29 EST 2025
Fri Feb 23 02:48:53 EST 2024
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Keywords Fuzzy DEMATEL
Fuzzy ANP
Weighted goal programming
Reliable supply chain
Sustainable supplier selection
Fuzzy TOPSIS
Language English
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PublicationDate 2020-03-20
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  year: 2020
  text: 2020-03-20
  day: 20
PublicationDecade 2020
PublicationTitle Journal of cleaner production
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Snippet Recently, large companies have shown a growing tendency to enhance the reliability and sustainability of their supply chains to increase customers’...
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StartPage 119517
SubjectTerms business enterprises
case studies
consumers (people)
decision making
environmental law
Fuzzy ANP
Fuzzy DEMATEL
fuzzy logic
Fuzzy TOPSIS
issues and policy
Reliable supply chain
supply chain
Sustainable supplier selection
warehouses
Weighted goal programming
Title A novel hybrid method using fuzzy decision making and multi-objective programming for sustainable-reliable supplier selection in two-echelon supply chain design
URI https://dx.doi.org/10.1016/j.jclepro.2019.119517
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Volume 250
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