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A comprehensive modeling framework for hazmat network design, hazmat response team location, and equity of risk

机译:危险品网络设计,危险品响应小组位置和风险均等的综合建模框架

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摘要

This paper considers a bi-level hazmat transportation network design problem in which hazmat shipments have to be transported over a road network between specified origin-destination points. The bi-level framework involves a regulatory authority and hazmat carriers. The control variables for the regulatory authority are locations of hazmat response teams and which additional links to include for hazmat travel. The regulatory authority (upper level) aims to minimize the maximum transport risk incurred by a transportation zone, which is related to risk equity. Our measure of risk incorporates the average response time to the hazmat incidents. Hazmat carriers (lower level) seek to minimize their travel cost. Using optimality conditions, we reformulate the non-linear bi-level model as a single-level mixed integer linear program, which is computationally tractable for medium size problems using a commercial solver. For large size problems, we propose a greedy heuristic approach, which we empirically demonstrate to find good solutions with reasonable computational effort. We also seek a robust solution to capture stochastic characteristics of the model. Experimental results are based on popular test networks from the Sioux Falls and Albany areas.
机译:本文考虑了双层危险品运输网络的设计问题,其中必须在指定的起点-目的地之间通过道路网络运输危险品。双层框架涉及监管机构和危险品运输商。监管机构的控制变量是危险品响应小组的位置以及危险品旅行中要包括的其他链接。监管机构(上级)旨在最大程度地减少与风险公平相关的运输区带来的最大运输风险。我们的风险衡量方法包括对危险品事件的平均响应时间。危险品运输工具(较低级别)寻求将其旅行成本降至最低。使用最优条件,我们将非线性双层模型重新构造为单级混合整数线性程序,该程序可以使用商业求解器对中等大小的问题进行计算处理。对于大型问题,我们提出了一种贪婪启发式方法,我们通过经验证明了这一方法,可以通过合理的计算工作找到良好的解决方案。我们还寻求一种可靠的解决方案来捕获模型的随机特征。实验结果基于苏福尔斯(Sioux Falls)和奥尔巴尼(Albany)地区的流行测试网络。

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