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Hazmats Transportation Network Design Model with Emergency Response under Complex Fuzzy Environment

机译:复杂模糊环境下应急响应的危险运输网络设计模型

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摘要

A bilevel optimization model for a hazardous materials transportation network design is presented which considers an emergency response teams location problem. On the upper level, the authority designs the transportation network to minimize total transportation risk. On the lower level, the carriers first choose their routes so that the total transportation cost is minimized. Then, the emergency response department locates their emergency service units so as to maximize the total weighted arc length covered. In contrast to prior studies, the uncertainty associated with transportation risk has been explicitly considered in the objective function of our mathematical model. Specifically, our research uses a complex fuzzy variable to model transportation risk. An improved artificial bee colony algorithm with priority-based encoding is also applied to search for the optimal solution to the bilevel model. Finally, the efficiency of the proposed model and algorithm is evaluated using a practical case and various computing attributes.
机译:提出了一种危险材料运输网络设计的双纤维优化模型,其考虑了紧急响应团队的位置问题。在上层,管理局设计运输网络,以尽量减少总运输风险。在较低级别的情况下,载体首先选择他们的路线,以便总运输成本最小化。然后,应急响应部门找到其紧急服务单元,以最大化覆盖的总加权弧长。与事先研究相比,在我们数学模型的目标函数中明确地考虑了与运输风险相关的不确定性。具体来说,我们的研究使用复杂的模糊变量来模拟运输风险。还应用了一种具有优先级的编码的改进的人造蜂菌落算法,用于搜索对彼得模型的最佳解决方案。最后,使用实际情况和各种计算属性评估所提出的模型和算法的效率。

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