Knowledge Agora



Similar Articles

Title Considering the circular economy for designing closed-loop supply chain under hybrid uncertainty: A robust scenario-based possibilistic-stochastic programming
ID_Doc 28274
Authors Dehshiri, SJH; Amiri, M
Title Considering the circular economy for designing closed-loop supply chain under hybrid uncertainty: A robust scenario-based possibilistic-stochastic programming
Year 2024
Published
Abstract Due to the significance of environmental and economic topics and limited resources, integrating Circular Economy (CE) principles is necessary for Supply Chain (SC) to improve sustainable competitive advantage. The integration of CE in SCs leads to a Closed-Loop Supply Chain Network Design (CLSCND) and a circular SC to achieve the economic, environmental, and social aspects of outputs and processes. On the other hand, the integration of CE in CLSCND faces hybrid uncertainties in different time horizons and scenarios due to the strategic and long-term nature of decisions. Due to the impact of random and cognitive uncertainties in the long term, it is necessary to consider these factors in the integration of CE in CLSCND. So, the aim of the present study is CLSCND to achieve the principles of CE and provide a robust scenario-based possibilistic-stochastic programming approach to consider cognitive and random uncertainties simultaneously. The contributions and innovations of the present study are the integration of CE in CLSCND, considering cognitive and random uncertainties at the same time, developing the Me criterion to achieve flexible solutions based on the convex combination of opinions of experts, and proposing the use of the absolute possible deviation to consider the possibilistic deviation. A case study was investigated for CLSCND in the paper industry to assess the presented approach, and the results indicated the accuracy and robustness of the solutions. The numerical simulation results demonstrated the appropriate performance of the proposed method, that the lowest average and standard deviation values of the constraints violation were 601 and 48, respectively, in the developed approach. Analytical findings show that implementing CE in the paper CLSCND provides insights for managers in demand and capacity constraint violations based on different risk levels. Also, this study offers a comprehensive framework for presenting robustness and flexible solutions in CLSC problems based on changes in robustness coefficients and sensitivity analysis of parameters of the CLSCND, which can create a trade-off between CE objectives in uncertain parameters.
PDF

Similar Articles

ID Score Article
4269 Atabaki, MS; Mohammadi, M; Naderi, B New robust optimization models for closed-loop supply chain of durable products: Towards a circular economy(2020)
28245 Ghoushchi, SJ; Hushyar, I; Sabri-Laghaie, K Multi-objective robust optimization for multi-stage-multi-product agile closed-loop supply chain under uncertainty in the context of circular economy(2021)
28781 Zhang, YC; Wang, YA; Yadav, BK Application of Circular Economy and Uncertainty Planning in Analyzing the Sustainable Closed-Loop Supply Chain Network Design(2022)
1420 Wu, YH; Wang, RL Sustainability-based enterprise supply chain optimization and response under circular economy approach: agile, adaptive and coordinated(2024)Management Decision, 62, 9
26382 Karunakaran, SK; Ramasamy, N; Anand, MD; Santhi, N Factor analysis of environmental effects in circular closed-loop supply chain network design and modelling under uncertainty in the manufacturing industry(2024)Environmental Quality Management, 34, 1
29007 Lotfi, R; Nazarpour, H; Gharehbaghi, A; Sarkhosh, SMH; Khanbaba, A Viable closed-loop supply chain network by considering robustness and risk as a circular economy(2022)Environmental Science And Pollution Research, 29.0, 46
5012 Foroozesh, N; Karimi, B; Mousavi, SM; Mojtahedi, M A hybrid decision-making method using robust programming and interval-valued fuzzy sets for sustainable-resilient supply chain network design considering circular economy and technology levels(2023)
22105 Golpîra, H; Javanmardan, A Robust optimization of sustainable closed-loop supply chain considering carbon emission schemes(2022)
76692 Al-Refaie, A; Jarrar, Y; Lepkova, N Sustainable Design of a Multi-Echelon Closed Loop Supply Chain under Uncertainty for Durable Products(2021)Sustainability, 13, 19
22872 Momenitabar, M; Ebrahimi, ZD; Arani, M; Mattson, J; Ghasemi, P Designing a sustainable closed-loop supply chain network considering lateral resupply and backup suppliers using fuzzy inference system(2022)
Scroll