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Long-term planning for ring-radial urban rail transit networks

机译:环形辐射城市轨道交通网络的长期规划

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摘要

Extensive work exists on regular rail network planning. However, few studies exist on the planning and design of ring-radial rail transit systems. With more ring transit lines being planned and built in Asia, Europe and the America's, a detailed study on ring transit lines is timely. An analytical model to find the optimal number of radial lines in a city for any demand distribution is first introduced. Secondly, passenger route choice for different rail networks is analyzed, for a many-to-many Origin-Destination (OD) demand distribution, based on a total travel time cost per passenger basis. The routes considered are: (1) radial lines only; (2) ring line only or radial lines and ring line combined; or (3) direct access to a destination without using the rail system. Mathematica and Matlab are used to code the route choice model. A cost-benefit optimization model to identify the feasibility and optimality of a ring line is proposed. Unlike simulations and agent-based models, this model is shown to be easily transferable to many ring-radial transit networks. The City of Calgary is used as an example to illustrate the applicability of each model. The existing urban rail network and trip distribution are major influencing factors in judging the feasibility and optimal location of the ring line. This study shows the potential net benefit of introducing a ring line by assessing changes in passengers' costs. The changes in passenger cost parameters, such as ride cost and access cost, are shown to greatly influence the feasibility of a ring line. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在常规的铁路网络规划中存在大量工作。但是,关于环形径向铁路运输系统的规划和设计的研究很少。随着在亚洲,欧洲和美洲计划和建设更多的环形交通线路,对环形交通线路进行详细的研究是及时的。首先介绍一种分析模型,以找到城市中任意需求分布的最佳径向线数。其次,基于每位旅客的总旅行时间成本,针对多对多始发地(OD)需求分布,分析了不同铁路网的旅客路线选择。考虑的路线是:(1)仅径向线; (2)仅环形线或径向线和环形线组合;或(3)不使用铁路系统直接到达目的地。 Mathematica和Matlab用于编码路线选择模型。提出了一种识别环线可行性和最优性的成本效益优化模型。与模拟和基于代理的模型不同,该模型显示可轻松转移到许多环形辐射网络。以卡尔加里市为例,说明每种模型的适用性。现有的城市轨道交通网络和出行分布是判断环线可行性和最佳位置的主要影响因素。这项研究表明,通过评估旅客费用的变化,引入环线的潜在净收益。乘客成本参数(例如乘车成本和进出成本)的变化显示出极大地影响了环线的可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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