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Article

Multi-Criteria Route Planning for HAZMAT Emergency Response Using a Delphi-AHP-Weighted A* Algorithm: A Case Study in Expressway Networks

by
Wipaporn Kitthiphovanonth
1,*,
Chalermchai Chaikittiporn
1,
Arroon Ketsakorn
1 and
Korn Puangnak
2
1
Faculty of Public Health, Thammasat University, Pathum Thani 12120, Thailand
2
Faculty of Engineering, Rajamangala University of Technology Phra Nakhon, Bangkok 10300, Thailand
*
Author to whom correspondence should be addressed.
Appl. Sci. 2026, 16(7), 3434; https://doi.org/10.3390/app16073434
Submission received: 1 February 2026 / Revised: 26 March 2026 / Accepted: 31 March 2026 / Published: 1 April 2026

Abstract

This study investigates the multi-criteria route optimization problem within complex urban expressway networks. The primary objective is to develop and evaluate a novel pathfinding approach by integrating a cost function weighted by the Delphi-Analytic Hierarchy Process (AHP) into the A* algorithm, thereby dynamically balancing operational efficiency and public safety. By employing the Delphi Technique with a panel of 17 experts, a specialized cost function was derived that incorporates twelve critical parameters, including traffic fluidity, population density, and chemical dispersion metrics modeled via Areal Location of Hazardous Atmosphere (ALOHA) This research applied the proposed model to a high-stakes Hazardous Material (HAZMAT) emergency response scenario to benchmark its performance against established baselines, specifically Dijkstra’s algorithm and Ant Colony Optimization (ACO). Simulation results demonstrate that the Delphi-weighted A* algorithm achieves an approximately 3.8% reduction in travel time relative to Dijkstra’s algorithm while enhancing expert-validated safety scores (a weighted metric of risk factors including population density and chemical dispersion) by approximately 8.6%. These findings provide a robust framework for algorithmic decision-support in time-critical logistics and infrastructure management. While numerically modest, these improvements are critical in HAZMAT scenarios, where even marginal time savings directly support the ‘Golden Hour’ principle and minor route adjustments can prevent catastrophic secondary exposure.
Keywords: multi-criteria route planning; A* algorithm; Dijkstra’s algorithm; Delphi technique; HAZMAT emergency response; expressway multi-criteria route planning; A* algorithm; Dijkstra’s algorithm; Delphi technique; HAZMAT emergency response; expressway

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MDPI and ACS Style

Kitthiphovanonth, W.; Chaikittiporn, C.; Ketsakorn, A.; Puangnak, K. Multi-Criteria Route Planning for HAZMAT Emergency Response Using a Delphi-AHP-Weighted A* Algorithm: A Case Study in Expressway Networks. Appl. Sci. 2026, 16, 3434. https://doi.org/10.3390/app16073434

AMA Style

Kitthiphovanonth W, Chaikittiporn C, Ketsakorn A, Puangnak K. Multi-Criteria Route Planning for HAZMAT Emergency Response Using a Delphi-AHP-Weighted A* Algorithm: A Case Study in Expressway Networks. Applied Sciences. 2026; 16(7):3434. https://doi.org/10.3390/app16073434

Chicago/Turabian Style

Kitthiphovanonth, Wipaporn, Chalermchai Chaikittiporn, Arroon Ketsakorn, and Korn Puangnak. 2026. "Multi-Criteria Route Planning for HAZMAT Emergency Response Using a Delphi-AHP-Weighted A* Algorithm: A Case Study in Expressway Networks" Applied Sciences 16, no. 7: 3434. https://doi.org/10.3390/app16073434

APA Style

Kitthiphovanonth, W., Chaikittiporn, C., Ketsakorn, A., & Puangnak, K. (2026). Multi-Criteria Route Planning for HAZMAT Emergency Response Using a Delphi-AHP-Weighted A* Algorithm: A Case Study in Expressway Networks. Applied Sciences, 16(7), 3434. https://doi.org/10.3390/app16073434

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