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Optimal deployment of emergency rescue stations in an urban transportation corridor

机译:在城市交通走廊中优化部署应急救援站

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This paper addresses the deployment issue of emergency rescue stations in an urban transportation corridor, with an aim to effectively reduce the casualties in traffic accidents. On the basis of urban population density, an accident rate distribution function for a corridor is first presented and calibrated, and a damage cost function is proposed to capture the correlation between rescue time and deteriorating health condition of injured passengers. A continuum model is then developed for determining the optimal number and locations of the rescue stations along the corridor and the medical service resource distribution at rescue stations subject to a capital budget constraint. The solution properties of the proposed model are explored analytically. Numerical examples are provided to show the effects of population density, urban form and different deployment schemes (even and uneven) on the rescue station locations. A case study of Wuhan China is employed to illustrate the effectiveness of the proposed methodology in improving the performance of the emergency rescue system.
机译:本文旨在解决城市交通走廊应急救援站的部署问题,以有效减少交通事故中的人员伤亡。根据城市人口密度,首先提出并校准了走廊的事故率分布函数,并提出了损失成本函数以捕获救援时间与受伤乘客健康状况之间的相关性。然后建立一个连续模型,用于确定沿走廊的救援站的最佳数量和位置以及受资本预算约束的救援站的医疗服务资源分配。分析性地探索了所提出模型的解性质。提供了数值示例,以显示人口密度,城市形态和不同的部署方案(均匀和不均匀)对救援站位置的影响。以中国武汉为例,说明了该方法在提高应急救援系统性能方面的有效性。

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