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Optimization of station locations and track alignments for rail transit lines.

机译:优化轨道交通线的车站位置和轨道路线。

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摘要

Designing urban rail transit systems is a complex problem, which involves the determination of station locations, track geometry, right-of-way type, and various other system characteristics. The existing studies overlook the complex interactions between railway alignments and station locations in a practical design process. This study proposes a comprehensive methodology that helps transit planners to concurrently optimize station locations and track alignments for an urban rail transit line. The modeling framework resolves the essential trade-off between an economically efficient system with low initial and operation cost and an effective system that provides convenient service for the public. The proposed method accounts for various geometric requirements and real-world design constraints for track alignment and stations plans. This method integrates a genetic algorithm (GA) for optimization with comprehensive evaluation of various important measures of effectiveness based on processing Geographical Information System (GIS) data.;The base model designs the track alignment through a sequence of preset stations. Detailed assumptions and formulations are presented for geometric requirements, design constraints, and evaluation criteria. Three extensions of the base model are proposed. The first extension explicitly incorporates vehicle dynamics in the design of track alignments, with the objective of better balancing the initial construction cost with the operation and user costs recurring throughout the system's life cycle. In the second extension, an integrated optimization model of rail transit station locations and track alignment is formulated for situations in which the locations of major stations are not preset. The concurrent optimization model searches through additional decision variables for station locations and station types, estimate rail transit demand, and incorporates demand and station cost in the evaluation framework. The third extension considers the existing road network when selecting sections of the alignment. Special algorithms are developed to allow the optimized alignment to take advantage of links in an existing network for construction cost reduction, and to account for disturbances of roadway traffic at highway/rail crossings. Numerical results show that these extensions have significantly enhanced the applicability of the proposed optimization methodology in concurrently selecting rail transit station locations and generating track alignment.
机译:设计城市轨道交通系统是一个复杂的问题,涉及确定车站的位置,轨道的几何形状,通行类型以及各种其他系统特征。现有研究忽略了实际设计过程中铁路路线和车站位置之间的复杂相互作用。这项研究提出了一种综合的方法,可以帮助运输规划人员同时优化车站位置和跟踪城市轨道交通线的路线。该建模框架解决了经济高效的系统(初始成本和运营成本低)与有效的系统(为公众提供便捷服务)之间的必要权衡。所提出的方法考虑到了各种几何要求和实际设计中的路线对准和车站计划约束。该方法基于处理地理信息系统(GIS)数据,将遗传算法(GA)集成在一起,以进行优化,同时综合评估各种重要的有效性指标。该基础模型通过一系列预设站设计轨道路线。提出了有关几何要求,设计约束和评估标准的详细假设和公式。提出了基本模型的三个扩展。第一项扩展明确地将车辆动力学纳入了轨道路线的设计,其目的是更好地平衡初始建设成本与整个系统生命周期中反复发生的运营和用户成本。在第二扩展中,针对未预设主要车站位置的情况,制定了轨道交通车站位置和路线对齐的集成优化模型。并发优化模型搜索用于车站位置和车站类型的其他决策变量,估算轨道交通需求,并将需求和车站成本纳入评估框架。第三个扩展部分在选择路线的部分时考虑了现有的道路网络。开发了特殊的算法,以允许优化的路线利用现有网络中的链接以降低建筑成本,并解决高速公路/铁路交叉口对道路交通的干扰。数值结果表明,这些扩展极大地增强了所建议的优化方法在同时选择轨道交通车站位置和生成轨道路线时的适用性。

著录项

  • 作者

    Lai, Xiaorong.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Civil.;Transportation.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 232 p.
  • 总页数 232
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:22

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