Open Access
| Issue |
RAIRO-Oper. Res.
Volume 59, Number 6, November-December 2025
|
|
|---|---|---|
| Page(s) | 3803 - 3850 | |
| DOI | https://doi.org/10.1051/ro/2025072 | |
| Published online | 07 January 2026 | |
- Accenture, Supply chains key to unlocking net zero emissions. https://www.accenture.com/gb-en/insights/supply-chain-operations/supply-chains-key-unlocking-net-zero-emissions (2024). [Google Scholar]
- V.V. Agrawal, A. Atasu and K. Van Ittersum, Remanufacturing, third-party competition, and consumers’ perceived value of new products. Manag. Sci. 61 (2015) 60–72. [Google Scholar]
- S.F. Alamdar, M. Rabbani and J. Heydari, Pricing, collection, and effort decisions with coordination contracts in a fuzzy, three-level closed-loop supply chain. Expert Syst. Appl. 104 (2018) 261–276. [Google Scholar]
- H. Barman, M. Pervin, S.K. Roy and G.W. Weber, Back-ordered inventory model with inflation in a cloudy-fuzzy environment. J. Ind. Manag. Optim. 17 (2021) 1913–1941. [Google Scholar]
- H. Barman, M. Pervin, S.K. Roy and G.W. Weber, Analysis of a dual-channel green supply chain game-theoretical model under carbon policy. Int. J. Syst. Sci. Oper. Logist. 10 (2023) 2242770. [Google Scholar]
- H. Barman, S.K. Roy, L. Sakalauskas and G.W. Weber, Inventory model involving reworking of faulty products with three carbon policies under neutrosophic environment. Adv. Eng. Inf. 57 (2023) 102081. [Google Scholar]
- S.K. Das, M. Pervin, S.K. Roy and G.W. Weber, Multi-objective solid transportation-location problem with variable carbon emission in inventory management: a hybrid approach. Ann. Oper. Res. 324 (2023) 283–309. [Google Scholar]
- T. Garai, D. Chakraborty and T.K. Roy, Fully fuzzy inventory model with price-dependent demand and time varying holding cost under fuzzy decision variables. J. Intell. Fuzzy Syst. 36 (2019) 3725–3738. [Google Scholar]
- R. Gupta, M. Goswami, Y. Daultani, B. Biswas and V. Allada, Profitability and pricing decision-making structures in presence of uncertain demand and green technology investment for a three tier supply chain. Comput. Ind. Eng. 179 (2023) 109190. [Google Scholar]
- R. Haque, M. Pervin and S.P. Mondal, A sustainable manufacturing–remanufacturing inventory model with price and green sensitive demand for defective and usable items. RAIRO-Oper. Res. 58 (2024) 3439–3467. [Google Scholar]
- X. Hong, K. Govindan, L. Xu and P. Du, Quantity and collection decisions in a closed-loop supply chain with technology licensing. Eur. J. Oper. Res. 256 (2017) 820–829. [Google Scholar]
- Y.T. Huang and Z.J. Wang, Information sharing in a closed-loop supply chain with technology licensing. Int. J. Prod. Econ. 191 (2017) 113–127. [CrossRef] [Google Scholar]
- M.Y. Jin, J.J. Nie, F. Yang and Y. Zhou, The impact of third-party remanufacturing on the forward supply chain: a blessing or a curse? Int. J. Prod. Res. 55 (2017) 6871–6882. [Google Scholar]
- M.Y. Jin, G.D. Li and M. Reimann, Team of rivals: How should original equipment manufacturers cooperate with independent remanufacturers via authorisation? Eur. J. Oper. Res. 296 (2022) 837–845. [Google Scholar]
- K. Karimabadi, A. Arshadi-khamseh and B. Naderi, Optimal pricing and remanufacturing decisions for a fuzzy dual-channel supply chain. Int. J. Syst. Sci. Oper. Logist. 7 (2020) 248–261. [Google Scholar]
- H. Ke, Y. Wu, H. Huang and Z.Y. Chen, Optimal pricing decisions for a closed-loop supply chain with retail competition under fuzziness. J. Oper. Res. Soc. 69 (2018) 1468–1482. [Google Scholar]
- S. Kumar, B. Sarkar and A. Kumar, Fuzzy reverse logistics inventory model of smart items with two warehouses of a retailer considering carbon emissions. RAIRO-Oper. Res. 55 (2021) 2285–2307. [Google Scholar]
- Y.K. Liu and B.D. Liu, Expected value operator of random fuzzy variable and random fuzzy expected value models. Int. J. Uncertainty Fuzziness Knowl.-Based Syst. 11 (2003) 195–215. [Google Scholar]
- D.H. Liu, X.X. Ji, J.F. Tang and H.Y. Li, A fuzzy cooperative game theoretic approach for multinational water resource spatiotemporal allocation. Eur. J. Oper. Res. 282 (2020) 1025–1037. [Google Scholar]
- W.J. Liu, W. Liu, N.N. Shen, Z.T. Xu, N.M. Xie, J. Chen and H.Y. Zhou, Pricing and collection decisions of a closed-loop supply chain with fuzzy demand. Int. J. Prod. Econ. 245 (2022) 108409. [Google Scholar]
- Z.J. Ma, Q. Zhou, Y. Dai and G.F. Guan, To license or not to license remanufacturing business? Sustainability 10 (2018) 347. [Google Scholar]
- A. Mondal and S.K. Roy, Behavioural three-way decision making with Fermatean fuzzy Mahalanobis distance: application to the supply chain management problems. Appl. Soft Comput. 151 (2024) 111182. [Google Scholar]
- A.K. Mondal, S. Pareek, K. Chaudhuri, A. Bera, R.K. Bachar and B. Sarkar, Technology license sharing strategy for remanufacturing industries under a closed-loop supply chain management bonding. RAIRO-Oper. Res. 56 (2022) 3017–3045. [Google Scholar]
- A.K. Mukherjee, G. Maity, J. Jablonsky, S.K. Roy and G.W. Weber, A sustainable inventory optimisation considering imperfect production under uncertain environment. Int. J. Syst. Sci. Oper. Logist. 11 (2024) 2379540. [Google Scholar]
- J. Nocedal and S.J. Wright, Numerical Optimization, 2nd edition. Springer Science & Business Media (2006). [Google Scholar]
- N. Oraiopoulos, M.E. Ferguson and L.B. Toktay, Relicensing as a secondary market strategy. Manag. Sci. 58 (2012) 1022–1037. [Google Scholar]
- A. Örsdemir, E. Kemahlıoğlu-Ziya and A.K. Parlaktürk, Competitive quality choice and remanufacturing. Prod. Oper. Manag. 23 (2014) 48–64. [Google Scholar]
- A. Paul, M. Pervin, S.K. Roy, N. Maculan and G.W. Weber, A green inventory model with the effect of carbon taxation. Ann. Oper. Res. 309 (2022) 233–248. [CrossRef] [MathSciNet] [Google Scholar]
- A. Paul, M. Pervin, R.V. Pinto, S.K. Roy, N. Maculan, and G.W. Weber, Effects of multiple prepayments and green investment on an EPQ model. J. Ind. Manag. Optim. 19 (2023) 6688–6704. [Google Scholar]
- H. Peng, N. Shen, H.L. Liao, H.Q. Xue and Q.W. Wang, Uncertainty factors, methods, and solutions of closed-loop supply chain – a review for current situation and future prospects. J. Clean. Prod. 254 (2020) 120032. [CrossRef] [Google Scholar]
- M. Pervin, S.K. Roy and G.W. Weber, An integrated inventory model with variable holding cost under two levels of trade-credit policy. Numer. Algebra Control Optim. 8 (2018) 169–191. [Google Scholar]
- M. Pervin, S.K. Roy and G.W. Weber, An integrated vendor–buyer model with quadratic demand under inspection policy and preservation technology. Hacettepe J. Math. Stat. 49 (2020) 1168–1189. [Google Scholar]
- M. Pervin, S.K. Roy, P. Sannyashi and G.W. Weber, Sustainable inventory model with environmental impact for non-instantaneous deteriorating items with composite demand. RAIRO-Oper. Res. 57 (2023) 237–261. [Google Scholar]
- M. Pervin, A. Paul, S.K. Roy, D. Lesmono and L. Sakalauskas, An integrated vendor–buyer model with sustainability and remanufacturing of returned product. RAIRO-Oper. Res. 58 (2024) 3291–3319. [Google Scholar]
- S.T. Sang, Decentralized channel decisions of green supply chain in a fuzzy decision making environment. Int. J. Comput. Intell. Syst. 10 (2017) 986–1001. [Google Scholar]
- R.C. Savaskan, S. Bhattacharya and L.N. Van Wassenhove, Closed-loop supply chain models with product remanufacturing. Manag. Sci. 50 (2004) 239–252. [Google Scholar]
- T.Q. Shi, D. Chhajed, Z.X. Wan and Y.C. Liu, Distribution channel choice and divisional conflict in remanufacturing operations. Prod. Oper. Manag. 29 (2020) 1702–1719. [Google Scholar]
- C. Sugapriya, P. Saranyaa, D. Nagarajan and D. Pamucar, Triangular intuitionistic fuzzy number based backorder and lost sale in production, remanufacturing and inspection process. Expert Syst. Appl. 240 (2024) 122261. [Google Scholar]
- S.L. Tang, W.J. Wang and G.G. Zhou, Remanufacturing in a competitive market: a closed-loop supply chain in a Stackelberg game framework. Expert Syst. Appl. 161 (2020) 113655. [Google Scholar]
- Y. Tao, J.H. Wu, X.F. Lai and F. Wang, Network planning and operation of sustainable closed-loop supply chains in emerging markets: retail market configurations and carbon policies. Transp. Res. E 144 (2020) 102131. [Google Scholar]
- UNFCCC, Conference of the Parties to the United Nations Framework Convention on Climate Change. https://unfccc.int/process/bodies/supreme-bodies/conference-of-the-parties-cop (2015). [Google Scholar]
- C. Wang, W. Tang and R.Q. Zhao, On the continuity and convexity analysis of the expected value function of a fuzzy mapping. J. Uncertain. Syst. 1 (2007) 148–160. [Google Scholar]
- L. Wang, G.S. Cai, A.A. Tsay and A.J. Vakharia, Design of the reverse channel for remanufacturing: must profit-maximization harm the environment? Prod. Oper. Manag. 26 (2017) 1585–1603. [Google Scholar]
- K. Wang, L. Zhang and W. Yan, Implications of OEM collaborating with its third-party remanufacturer in remanufacturing operations. IEEE Access 7 (2019) 115200–115207. [Google Scholar]
- F. Wei and Q. Huang, Operational decisions for remanufactured products in a sustainable supply chain. Ann. Oper. Res. (2024). DOI: https://doi.org/10.1007/s10479-024-06412-8. [Google Scholar]
- J. Wei, J. Zhao and Y.J. Li, Pricing decisions for a closed-loop supply chain in a fuzzy environment. Asia Pac. J. Oper. Res. 29 (2012) 1240003. [Google Scholar]
- X.L. Wu and Y. Zhou, Does the entry of third-party remanufacturers always hurt original equipment manufacturers? Decis. Sci. 47 (2016) 762–780. [Google Scholar]
- B.S. Xu, Green remanufacturing engineering and its development strategy in china. Front. Eng. Manag. 3 (2016) 102–106. [Google Scholar]
- G.Z. Yan, Y.D. Ni and X.F. Yang, Pricing and recovery in a dual-channel closed-loop supply chain under uncertain environment. Soft Comput. 25 (2021) 13679–13694. [Google Scholar]
- G.Z. Yan, Q.Y. Song, Y.D. Ni and X.F. Yang, Pricing, carbon emission reduction and recycling decisions in a closed-loop supply chain under uncertain environment. J. Ind. Manag. Optim. 19 (2023) 224–245. [Google Scholar]
- X.H. Yu and Q. Zhang, An extension of cooperative fuzzy games. Fuzzy Sets Syst. 161 (2010) 1614–1634. [Google Scholar]
- H.G. Zhang, Z.J. Wang, X.P. Hong, Y.M. Gong and Q. Zhong, Fuzzy closed-loop supply chain models with quality and marketing effort-dependent demand. Expert Syst. Appl. 207 (2022) 118081. [Google Scholar]
- J. Zhao, W.S. Tang, R.Q. Zhao and J. Wei, Pricing decisions for substitutable products with a common retailer in fuzzy environments. Eur. J. Oper. Res. 216 (2012) 409–419. [Google Scholar]
- J. Zhao, C. Wang and L. Xu, Decision for pricing, service, and recycling of closed-loop supply chains considering different remanufacturing roles and technology authorizations. Comput. Ind. Eng. 132 (2019) 59–73. [Google Scholar]
- B.R. Zheng and L. Jin, Relicensing scheme selection in closed-loop supply chains with differentiated new and remanufactured products. Comput. Ind. Eng. 171 (2022) 108443. [Google Scholar]
- X.-X. Zheng, Z. Liu, K.W. Li, J. Huang and J. Chen, Cooperative game approaches to coordinating a three-echelon closed-loop supply chain with fairness concerns. Int. J. Prod. Econ. 212 (2019) 92–110. [CrossRef] [Google Scholar]
- Q. Zhou and K.F. Yuen, An investigation of original equipment manufacturer’s optimal remanufacturing mode and engagement strategy. Int. Trans. Oper. Res. 28 (2021) 1890–1916. [Google Scholar]
- Q. Zhou, C. Meng and K.F. Yuen, Remanufacturing authorization strategy for competition among OEM, authorized remanufacturer, and unauthorized remanufacturer. Int. J. Prod. Econ. 242 (2021) 108295. [Google Scholar]
- Q. Zhou, C. Meng, K.F. Yuen and J.B. Sheu, Remanufacturing authorization strategy for an original equipment manufacturer-contract manufacturer supply chain: Cooperation or competition? Int. J. Prod. Econ. 240 (2021) 108238. [Google Scholar]
- Q. Zhou, K.F. Yuen, C. Meng and J.B. Sheu, Impact of intercompetitor licensing on remanufacturing market competition and cooperation. IEEE Trans. Eng. Manag. 71 (2022) 1296–1313. [Google Scholar]
- Z.B. Zou, J.J. Wang, G.S. Deng and H. Chen, Third-party remanufacturing mode selection: Outsourcing or authorization? Transp. Res. E 87 (2016) 1–19. [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.
