Open Access
Issue
RAIRO-Oper. Res.
Volume 59, Number 5, September-October 2025
Page(s) 2577 - 2606
DOI https://doi.org/10.1051/ro/2025094
Published online 05 September 2025
  • V. Agarwal, A.Z. Hameed, S. Malhotra, K. Mathiyazhagan, S. Alathur and A. Appolloni, Role of industry 4.0 in agile manufacturing to achieve sustainable development. Bus. Strategy Environ. 32 (2023) 3671–3688. [Google Scholar]
  • M. Akhtar, Sustainable and agile manufacturing outsourcing partner selection: a literature review. Int. J. Prod. Manag. Eng. 10 (2022) 143–158. [Google Scholar]
  • M. Akhtar, A. Gunasekaran and Y. Kayikci, A novel stochastic fuzzy decision model for agile and sustainable global manufacturing outsourcing partner selection in footwear industry. J. Enterp. Inf. Manag. 36 (2023) 979–1007. [Google Scholar]
  • M. Alrasheedi, A. Mardani, A.R. Mishra, P. Rani and N. Loganathan, An extended framework to evaluate sustainable suppliers in manufacturing companies using a new Pythagorean fuzzy entropy-SWARA-WASPAS decision-making approach. J. Enterp. Inf. Manag. 35 (2022) 333–357. [Google Scholar]
  • K.T. Atanassov and S. Stoeva, Intuitionistic fuzzy sets. Fuzzy Sets Syst. 20 (1986) 87–96. [CrossRef] [Google Scholar]
  • A. Awasthi, K. Govindan and S. Gold, Multi-tier sustainable global supplier selection using a fuzzy AHP-VIKOR based approach. Int. J. Prod. Econ. 195 (2018) 106–117. [Google Scholar]
  • R. Booth, Agile manufacturing. Eng. Manag. J. 6 (1996) 105–112. [Google Scholar]
  • S. Chakraborty, R.D. Raut, T. Rofin, S. Chatterjee and S. Chakraborty, A comparative analysis of multi-attributive border approximation area comparison (MABAC) model for healthcare supplier selection in fuzzy environments. Decis. Anal. J. 8 (2023) 100290. [Google Scholar]
  • R. Chaurasiya and D. Jain, Hybrid MCDM method on Pythagorean fuzzy set and its application. Decis. Mak.: Appl. Manag. Eng. 6 (2023) 379–398. [Google Scholar]
  • R. Chaurasiya and D. Jain, A new algorithm on Pythagorean fuzzy-based multi-criteria decision-making and its application. Iran. J. Sci. Technol. Trans. Electr. Eng. 47 (2023) 871–886. [Google Scholar]
  • H. Coimbra, K. Cormican, O. McDermott and J. Antony, Leading the transformation: agile success factors in an irish manufacturing company. Total Qual. Manag. Bus. Excell. 34 (2023) 1940–1967. [Google Scholar]
  • D. Dalalah, M. Hayajneh and F. Batieha, A fuzzy multi-criteria decision making model for supplier selection. Expert Syst. Appl. 38 (2011) 8384–8391. [Google Scholar]
  • M. Dursun and O. Ogunclu, Agile supplier evaluation using hierarchical TOPSIS method. WSEAS Trans. Inf. Sci. Appl. 18 (2021) 12–19. [Google Scholar]
  • F. Ecer and D. Pamucar, Marcos technique under intuitionistic fuzzy environment for determining the covid-19 pandemic performance of insurance companies in terms of healthcare services. Appl. Soft Comput. 104 (2021) 107199. [Google Scholar]
  • F. Ecer, D. Pamucar, A. Mardani and M. Alrasheedi, Assessment of renewable energy resources using new interval rough number extension of the level based weight assessment and combinative distance-based assessment. Renew. Energy 170 (2021) 1156–1177. [Google Scholar]
  • R.D. Estrada-Esponda, M. López-Benítez, G. Matturro and J.C. Osorio-Gómez, Selection of software agile practices using analytic hierarchy process. Heliyon 10 (2024) e22948. [Google Scholar]
  • M.R. Galankashi, Z. Bastani and M. Hisjam, Supplier selection: a lean-agile (Leagile) approach, in Proceedings of the 11th Annual International Conference on Industrial Engineering and Operations Management, IEOM 2021 (2021). [Google Scholar]
  • C. P. Garg and A. Sharma, Sustainable outsourcing partner selection and evaluation using an integrated BWM–VIKOR framework. Environ. Dev. Sustain. 22 (2020) 1529–1557. [Google Scholar]
  • A. Ghazvinian, B. Feng, J. Feng, H. Talebzadeh and M. Dzikuć, Lean, agile, resilient, green, and sustainable (LARGS) supplier selection using multi-criteria structural equation modeling under fuzzy environments. Sustainability 16 (2024) 1594. [Google Scholar]
  • P. Giri, S. Paul and B.K. Debnath, A fuzzy graph theory and matrix approach (fuzzy GTMA) to select the best renewable energy alternative in india. Appl. Energy 358 (2024) 122582. [Google Scholar]
  • P. Giri, S. Paul and B.K. Debnath, A hybrid graph-theoretic solution of delphi and graph theory matrix approach (GTMA) to the challenges of sustainable lithium-ion battery (LIB) supply chains in electric vehicles in India. J. Energy Storage 97 (2024) 112702. [Google Scholar]
  • N. Goker, A novel integrated intuitionistic fuzzy decision aid for agile outsourcing provider selection: a covid-19 pandemic-based scenario analysis. Soft Comput. 25 (2021) 13723–13740. [Google Scholar]
  • M. Hajiaghaei-Keshteli, Z. Cenk, B. Erdebilli, Y.S. Özdemir and F. Gholian-Jouybari, Pythagorean fuzzy topsis method for green supplier selection in the food industry. Expert Syst. Appl. 224 (2023) 120036. [Google Scholar]
  • M. Jafari and S. Naghdi Khanachah, An integrated multi-attributive border approximation area comparison (MABAC) method for evaluating resilience and knowledge sharing of suppliers in Pythagorean fuzzy environment. Artif. Intell. Rev. 57 (2024) 227. [Google Scholar]
  • M.N. Jafar, M. Saeed, M. Saqlain and M.-S. Yang, Trigonometric similarity measures for neutrosophic hypersoft sets with application to renewable energy source selection. IEEE Access 9 (2021) 129178–129187. [Google Scholar]
  • C. Jana, H. Garg and M. Pal, Multi-attribute decision making for power dombi operators under Pythagorean fuzzy information with MABAC method. J. Ambient Intell. Humaniz. Comput. 14 (2023) 10761–10778. [Google Scholar]
  • J. Kabus, M. Dziadkiewicz, I. Miciuła and M. Mastalerz, Using outsourcing services in manufacturing companies. Resources 11 (2022) 34. [Google Scholar]
  • M. Kumar, D. Garg and A. Agarwal, Fuzzy dematel approach for agile supplier selections performance criteria. J. Phys.: Conf. Ser. 1240 (2019) 012157. [Google Scholar]
  • A. Kumar, S. Luthra, S.K. Mangla, J.A. Garza-Reyes and Y. Kazancoglu, Analysing the adoption barriers of low-carbon operations: a step forward for achieving net-zero emissions. Resour. Policy 80 (2023) 103256. [Google Scholar]
  • S. Luo, W. Pedrycz and L. Xing, Selection of data products: a hybrid AFSA-MABAC approach. Int. J. Mach. Learn. Cybern. 13 (2022) 1079–1097. [Google Scholar]
  • A.R. Mishra, P. Rani, D. Pamucar and A. Saha, An integrated Pythagorean fuzzy fairly operator-based MARCOS method for solving the sustainable circular supplier selection problem. Ann. Oper. Res. 342 (2024) 523–564. [Google Scholar]
  • D. Pamučar and G. Ćirović, The selection of transport and handling resources in logistics centers using multi-attributive border approximation area comparison (MABAC). Expert Syst. Appl. 42 (2015) 3016–3028. [Google Scholar]
  • B.S. Patel and M. Sambasivan, A systematic review of the literature on supply chain agility. Manag. Res. Rev. 45 (2022) 236–260. [Google Scholar]
  • B.S. Patel, A.K. Tiwari, M. Kumar, C. Samuel and G. Sutar, Analysis of agile supply chain enablers for an indian manufacturing organisation. Int. J. Agile Syst. Manag. 13 (2020) 1–27. [Google Scholar]
  • X. Peng and Y. Yang, Pythagorean fuzzy choquet integral based MABAC method for multiple attribute group decision making. Int. J. Intell. Syst. 31 (2016) 989–1020. [Google Scholar]
  • A. Puška, A. Štilić, M. Nedeljković, D. Božanić and S. Biswas, Integrating fuzzy rough sets with LMAW and MABAC for green supplier selection in agribusiness. Axioms 12 (2023) 746. [CrossRef] [Google Scholar]
  • M. Riaz, A. Habib, M. Saqlain and M.-S. Yang, Cubic bipolar fuzzy-VIKOR method using new distance and entropy measures and Einstein averaging aggregation operators with application to renewable energy. Int. J. Fuzzy Syst. 25 (2023) 510–543. [Google Scholar]
  • B. Sahoo and B.K. Debnath, A novel hybrid spherical fuzzy multi-criteria decision-making approach to select the best hydroelectric power plant source in India. Renew. Energy Focus 51 (2024) 100650. [Google Scholar]
  • B. Sahoo and B.K. Debnath, Select the best place for regenerative practices in tourism by using the fuzzy MABAC method, in Building Community Resiliency and Sustainability With Tourism Development. IGI Global (2024) 261–285. [Google Scholar]
  • A.K. Sahu, M. Sharma, R.D. Raut, A.K. Sahu, N.K. Sahu, J. Antony and G.L. Tortorella, Decision-making framework for supplier selection using an integrated MCDM approach in a Lean-Agile-Resilient-Green environment: evidence from indian automotive sector. TQM J. 35 (2023) 964–1006. [Google Scholar]
  • M. Sheykhzadeh, R. Ghasemi, H.R. Vandchali, A. Sepehri and S.A. Torabi, A hybrid decision-making framework for a supplier selection problem based on lean, agile, resilience, and green criteria: a case study of a pharmaceutical industry. Environ. Dev. Sustain. 26 (2024) 30969–30996. [Google Scholar]
  • A.K. Sinha and A. Anand, Development of sustainable supplier selection index for new product development using multi criteria decision making. J. Clean. Prod. 197 (2018) 1587–1596. [Google Scholar]
  • M. Soltani, H. Aouag, C. Anass and M.D. Mouss, Development of an advanced application process of lean manufacturing approach based on a new integrated MCDM method under Pythagorean fuzzy environment. J. Clean. Prod. 386 (2023) 135731. [Google Scholar]
  • H. Sonar, A. Gunasekaran, S. Agrawal and M. Roy, Role of lean, agile, resilient, green, and sustainable paradigm in supplier selection. Clean. Logist. Supply Chain 4 (2022) 100059. [Google Scholar]
  • Ž. Stević, D. Pamučar, A. Puška and P. Chatterjee, Sustainable supplier selection in healthcare industries using a new MCDM method: measurement of alternatives and ranking according to compromise solution (MARCOS). Comput. Ind. Eng. 140 (2020) 106231. [CrossRef] [Google Scholar]
  • D. Tešić, D. Božanić, A. Puška, A. Milić and D. Marinković, Development of the MCDM fuzzy LMAW-GREY MARCOS model for selection of a dump truck. Rep. Mech. Eng. 4 (2023) 1–17. [Google Scholar]
  • E. Triantaphyllou and A. Sánchez, A sensitivity analysis approach for some deterministic multi-criteria decision-making methods. Decis. Sci. 28 (1997) 151–194. [Google Scholar]
  • V. Venugopal and P. Saleeshya, Manufacturing system sustainability through lean and agile initiatives. Int. J. Sustain. Eng. 12 (2019) 159–173. [Google Scholar]
  • Y. Wang, W. Wang, Z. Wang, M. Deveci, S.K. Roy and S. Kadry, Selection of sustainable food suppliers using the Pythagorean fuzzy CRITIC-MARCOS method. Inf. Sci. 664 (2024) 120326. [Google Scholar]
  • S.-J. Wu and G.-W. Wei, Pythagorean fuzzy Hamacher aggregation operators and their application to multiple attribute decision making. Int. J. Knowl.-Based Intell. Eng. Syst. 21 (2017) 189–201. [Google Scholar]
  • Y.-X. Xue, J.-X. You, X.-D. Lai and H.-C. Liu, An interval-valued intuitionistic fuzzy MABAC approach for material selection with incomplete weight information. Appl. Soft Comput. 38 (2016) 703–713. [Google Scholar]
  • R.R. Yager, Pythagorean membership grades in multicriteria decision making. IEEE Trans. Fuzzy Syst. 22 (2013) 958–965. [Google Scholar]
  • L. Zadeh, Fuzzy sets. Inf. Control 8 (1965) 338–353. [Google Scholar]
  • X. Zhang and Z. Xu, Extension of TOPSIS to multiple criteria decision making with Pythagorean fuzzy sets. Int. J. Intell. Syst. 29 (2014) 1061–1078. [CrossRef] [Google Scholar]

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