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ISSN Approved Journal || eISSN: 2582-8185 || CODEN: IJSRO2 || Impact Factor 8.2 || Google Scholar and CrossRef Indexed

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Research and review articles are invited for publication in January 2026 (Volume 18, Issue 1)

Dynamic Fuzzy Risk-Averse Multi-Objective Capacitated Transportation Optimization: A Triangular Fuzzy Goal Programming Approach f or Sustainable Logistics

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  • Dynamic Fuzzy Risk-Averse Multi-Objective Capacitated Transportation Optimization: A Triangular Fuzzy Goal Programming Approach f or Sustainable Logistics

Chauhan Priyank Hasmukbhai 1, * and Ritu Khanna 2

1 Department of Mathematics, Faculty of Science, Pacific Academy of Higher Education & Research University, Udaipur, Rajasthan.

2 Faculty of Engineering, Pacific Academy of Higher Education & Research University, Udaipur, Rajasthan.

Research Article

International Journal of Science and Research Archive, 2025, 16(03), 1311-1323

Article DOI: 10.30574/ijsra.2025.16.3.2731

DOI url: https://doi.org/10.30574/ijsra.2025.16.3.2731

Received on 22 August 2025; revised on 28 September 2025; accepted on 30 September 2025

The transportation of goods in a supply chain must navigate multiple conflicting objectives, including minimizing cost, route risk, and environmental impacts. This study presents the development, formulation, and validation of a Dynamic Fuzzy Risk-Averse Multi-Objective Capacitated Transportation Optimization (DFRAMCTO) model for sustainable logistics planning. The model simultaneously minimizes transportation costs, route-specific risks, and carbon emissions within a fuzzy, risk-sensitive, and capacity-constrained environment. Leveraging triangular fuzzy numbers to capture parameter uncertainty, the model integrates dynamic cost structures, time-varying risk coefficients, and emission penalties into a unified optimization framework. A Triangular Fuzzy Goal Programming (TFGP) approach, based on the max–min compromise strategy, transforms the multi-objective fuzzy problem into a solvable linear program. The methodology includes model formulation, parameterization through simulated yet realistic datasets, defuzzification via the Graded Mean Integration Representation method. A numerical illustration demonstrates model applicability. Results revealed that incorporating dynamic risk-aversion and fuzzy multi-objective trade-offs significantly improves decision robustness in uncertain logistics networks. The DFRAMCTO model contributes to operational research by offering a transparent, adaptable, and sustainability-aware decision-support tool for transportation planners.

Transportation Optimization; Fuzzy Goal Programming; Multi-Objective Optimization; Risk-Aware Logistics; Carbon Emissions; Supply Chain Management

https://journalijsra.com/sites/default/files/fulltext_pdf/IJSRA-2025-2731.pdf

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Chauhan Priyank Hasmukbhai and Ritu Khanna. Dynamic Fuzzy Risk-Averse Multi-Objective Capacitated Transportation Optimization: A Triangular Fuzzy Goal Programming Approach f or Sustainable Logistics. International Journal of Science and Research Archive, 2025, 16(03), 1311-1323. Article DOI: https://doi.org/10.30574/ijsra.2025.16.3.2731.

Copyright © 2025 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution Liscense 4.0

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