首页> 外文会议>International Conference on Urban Transport and the Environment in the 21st Century; 2007; Coimbra(PT) >Optimal planning for developing, modernizing and maintaining the street infrastructure of dense and large urban areas
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Optimal planning for developing, modernizing and maintaining the street infrastructure of dense and large urban areas

机译:开发,现代化和维护人口稠密和大城市地区街道基础设施的最佳规划

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This paper presents an optimisation model for scheduling works on urban street infrastructure. Using real traffic data from Bucharest, we analyse the exceeding of users' costs, as the difference between the users' total costs on a simplified network without works and the users' total costs in cases of various strategies of work completion. Due to the significant amount of users' costs they have to be considered beside the construction costs in selecting the best scheduling strategy. The constructor's costs are presented in three situations: (ⅰ) - the route, including several streets, is totally closed, there is a sole constructor working on the entire route and the streets are opened to traffic simultaneously; (ⅱ) - the route is executed subsequently, each street being opened to traffic as the works on it are finished; (ⅲ) all works start simultaneously, each street having its own construction site and the streets are opened to traffic as the works are finished. The total social cost, as a sum of users' additional costs and constructor's costs for the three strategies, represents the objective function for the optimal works scheduling on urban street infrastructure.
机译:本文提出了城市街道基础设施调度工作的优化模型。使用来自布加勒斯特的真实交通数据,我们分析了超出用户成本的情况,这是在没有工作的简化网络上用户的总成本与在各种工作完成策略下用户的总成本之间的差额。由于大量的用户成本,因此在选择最佳调度策略时,除了建造成本外,还必须考虑这些成本。施工人员的成本在以下三种情况下呈现:(ⅰ)-路线(包括多条街道)已完全封闭,只有一名施工人员在整条路线上工作,并且街道同时开放供车辆通行; (ⅱ)-随后执行这条路线,每条街道在工程完成后均开放通车; (ⅲ)所有工程同时开始,每条街道都有自己的建筑工地,工程完工后,这些街道将通车。这三种策略的总社会成本,包括用户的额外成本和建筑商的成本之和,代表了城市街道基础设施最佳工程进度的目标函数。

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