A Bi-Objective Approach to Evaluate Highway Routing and Regulatory Strategies for Hazardous Materials Transportation

Ashrafur Rahman, L. Fiondella, N. Lownes
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引用次数: 3

Abstract

Hazardous materials (hazmat) transportation is of concern to policymakers because of the serious safety, health, and environmental risks associated with the release of hazmat. One effective approach to minimize risks associated with hazmat transport is the prohibition of hazmat transportation on higher risk links that either pose safety hazards or increased exposure by traversing densely populated areas. Because of high risk, there are multiple stakeholders involved in hazmat transportation. While shippers and carriers are directly involved in making routing decisions, regulatory agencies influence this decision by imposing routing restrictions. In this paper, we apply a bi-objective shortest path problem to evaluate routing and regulation plans for hazmat transportation. We characterize the cost objective as the shortest path between an origin and a destination. The risk objective is to minimize the risk of exposure by restricting the link with the highest risk on the best available path from an origin to a destination. We formulate the bi-objective model and apply it to a test network. Solutions consider multiple origin-destination pairs and present a non-dominated frontier to establish routing and regulatory strategies for hazmat transportation.
危险品运输公路路线与管制策略的双目标评估方法
有害物质(有害物质)的运输是决策者关注的问题,因为有害物质的释放会带来严重的安全、健康和环境风险。尽量减少与危险物品运输有关的风险的一种有效办法是禁止危险较高环节的危险物品运输,这些环节或构成安全危险,或因穿越人口稠密地区而增加接触。由于危险性高,危险品运输涉及多个利益相关者。虽然托运人和承运人直接参与制定路线决策,但监管机构通过施加路线限制来影响这一决策。本文应用双目标最短路径问题来评价危险品运输的路线规划和调度方案。我们将成本目标描述为原点和目的地之间的最短路径。风险目标是通过限制从起点到目的地的最佳可用路径上风险最高的链接来最大限度地减少暴露风险。我们建立了双目标模型,并将其应用于一个测试网络。解决方案考虑了多个始发目的地对,并提出了一个非主导的边界,以建立危险品运输的路线和监管策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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