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A Multiobjective Route Robust Optimization Model and Algorithm for Hazmat Transportation

机译:一种多目标路由鲁棒优化模型及避难所运输算法

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摘要

Aiming at route optimization problem of hazardous materials transportation in uncertain environment, this paper presents a multiobjective robust optimization model by taking robust control parameters into consideration. The objective of the model is to minimize not only transportation risk but also transportation time, and a robust counterpart of the model is introduced through applying the Bertsimas-Sim robust optimization theory. Moreover, a fuzzy C-means clustering-particle swarm optimization (FCMC-PSO) algorithm is designed, and the FCMC algorithm is used to cluster the demand points. In addition the PSO algorithm with the adaptive archives grid is used to calculate the robust optimization route of hazmat transportation. Finally, the computational results show the multiobjective route robust optimization model with 3 centers and 20 demand points’ sample studied and FCMC-PSO algorithm for hazmat transportation can obtain different robustness Pareto solution sets. As a result, this study will provide basic theory support for hazmat transportation safeguarding.
机译:旨在在不确定环境中危险材料运输的路线优化问题,本文通过考虑强大的控制参数来提出多目标稳健优化模型。该模型的目的是最小化运输风险,而且通过应用Bertsimas-SIM强大的优化理论来引入模型的稳健对应。此外,设计了模糊的C-Means聚类粒子群综合优化(FCMC-PSO)算法,FCMC算法用于聚类需求点。此外,使用自适应档案网格的PSO算法用于计算Hazmat运输的鲁棒优化路径。最后,计算结果显示了具有3个中心和20个需求点的多目标路由鲁棒优化模型,研究和Hazmat运输的FCMC-PSO算法可以获得不同的鲁棒性Pareto解决方案集。因此,本研究将为Hazmat运输保障提供基本理论支持。

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