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Optimization-Simulation Model for Planning Supply Transport to Large Infrastructure Public Works Located in Congested Urban Areas

机译:规划拥挤城市地区大型基础设施公共工程供应运输的优化模拟模型

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This article proposes an optimization-simulation model for planning the transport of supplies to large public infrastructure works located in congested urban areas. The purpose is to minimize their impact on the environment and on private transportation users on the local road network. To achieve this goal, the authors propose and solve an optimization problem for minimizing the total system cost made up of operating costs for various alternatives for taking supplies to the worksite and the costs supported by private vehicle users as a result of increased congestion due to the movement of heavy goods vehicles transporting material to the worksite. The proposed optimization problem is a bi-level Math Program model. The upper level defines the total cost of the system, which is minimized taking into account environmental constraints on atmospheric and noise pollution. The lower level defines the optimization problem representing the private transportation user behavior, assuming they choose the route that minimizes their total individual journey costs. Given the special characteristics of the problem, a heuristic algorithm is proposed for finding optimum solutions. Both the model developed and the specific solution algorithm are applied to the real case of building a new port at Laredo (Northern Spain). A series of interesting conclusions are obtained from the corresponding sensitivity analysis.
机译:本文提出了一种优化模拟模型,用于规划向拥挤的城市地区的大型公共基础设施的物资运输。目的是将其对环境和本地道路网络上的私人运输用户的影响降至最低。为了实现这一目标,作者提出并解决了一个优化问题,以使总系统成本最小化,该总成本由各种替代​​方案的运营成本组成,这些替代方案用于将物料运往工作场所,而私人车辆用户由于交通拥堵而增加了拥堵成本。将物料运送到工作地点的重型货车的移动。提出的优化问题是双层数学程序模型。较高的级别定义了系统的总成本,并考虑到大气和噪声污染的环境限制,将其最小化。下层定义了代表私人运输用户行为的优化问题,假设他们选择的路线将个人旅行总成本降到最低。考虑到问题的特殊性,提出了一种启发式算法来寻找最优解。开发的模型和特定的解决方案算法都应用于在拉雷多(西班牙北部)建造新港口的实际案例。从相应的灵敏度分析中可以得出一系列有趣的结论。

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