Comparison of current research with existing research
| Author | Adopted models/tools | Research topics |
|---|---|---|
| Alam et al., 2021 | Intuitionistic fuzzy DEMATEL | Analyzing the barriers to VSC sustainability during COVID-19 |
| Fadaki et al., 2022 | Linear optimization by incorporating new contextual constraints | Vaccine distribution through a multi-period allocation model |
| Gilani and Sahebi, 2022 | Polyhedral uncertainty sets | VSC uncertainty associated to unjust distribution of vaccine across the globe |
| Jarrett et al., 2020 | Qualitative study | Exploring role of manufacturer on vaccine tracing and minimization of counterfeiting through 2D barcodes |
| Kamenivskyy et al., 2022 | Blockchain framework | Application of IT into pandemic vaccine distribution |
| Sazvar et al., 2022 | Multi-choice goal programming based multi-objective model | Proposed model helps in making tactical and strategic decision considering multiple goals of vaccination process |
| Öztürk et al., 2021 | Interval-valued intuitionistic fuzzy VIKOR | Framework for selecting the best vaccines from the alternatives |
| Pan et al., 2022 | Linear optimization | Information sharing and coordination among public and private VSC players |
| Sinha et al., 2021 | Heuristic inventory forecasting model through linear optimization | Strategizing the VSC focusing on ensuring the required service level for herd immunity |
| Shahparvari et al., 2022 | Integrated model using hierarchical GIS-heuristics-simulation and analytics | Prioritizing the distribution of vaccines among benefactors based on their vulnerability |
| Tavana et al., 2021 | Mixed-integer linear programming | Equitable vaccine distribution in developing nations |
| Yadav and Kumar, 2023 | Integrated BWM–MARCOS approach | Prioritization of lean-agile-green practices in context to VSC sustainability |
| Yadav and Kumar, 2023 | Fuzzy DEMATEL | Prioritizing the adoption barriers of blockchain and IoT in modern VSCs |
| This study | Spherical fuzzy extension of DANP | Defining performance objectives of pandemic VSC to deal with issues spread across multiple dimensions and prioritizing them |
| Author | Adopted models/tools | Research topics |
|---|---|---|
| Intuitionistic fuzzy DEMATEL | Analyzing the barriers to VSC sustainability during COVID-19 | |
| Linear optimization by incorporating new contextual constraints | Vaccine distribution through a multi-period allocation model | |
| Polyhedral uncertainty sets | VSC uncertainty associated to unjust distribution of vaccine across the globe | |
| Qualitative study | Exploring role of manufacturer on vaccine tracing and minimization of counterfeiting through 2D barcodes | |
| Blockchain framework | Application of IT into pandemic vaccine distribution | |
| Multi-choice goal programming based multi-objective model | Proposed model helps in making tactical and strategic decision considering multiple goals of vaccination process | |
| Interval-valued intuitionistic fuzzy VIKOR | Framework for selecting the best vaccines from the alternatives | |
| Linear optimization | Information sharing and coordination among public and private VSC players | |
| Heuristic inventory forecasting model through linear optimization | Strategizing the VSC focusing on ensuring the required service level for herd immunity | |
| Integrated model using hierarchical GIS-heuristics-simulation and analytics | Prioritizing the distribution of vaccines among benefactors based on their vulnerability | |
| Mixed-integer linear programming | Equitable vaccine distribution in developing nations | |
| Integrated BWM–MARCOS approach | Prioritization of lean-agile-green practices in context to VSC sustainability | |
| Fuzzy DEMATEL | Prioritizing the adoption barriers of blockchain and IoT in modern VSCs | |
| Spherical fuzzy extension of DANP | Defining performance objectives of pandemic VSC to deal with issues spread across multiple dimensions and prioritizing them |
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