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Integrating underground line design with existing public transportation systems to increase transit network connectivity: Case study in Greater Cairo

机译:将地下线设计与现有的公共交通系统集成,以增加运输网络连接:大开店的案例研究

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Connectivity is a significant problem in large-scale transit networks because the number of transfers required to conduct a trip is considered a discomfort by transit users. This paper presents a practical solution for an underground metro line planning problem by integrating existing bus and metro networks into a single connected transit network. The proposed method aims to obviate the usual combinatorial complexity when solving a transit route design problem. It aims to increase the overall transit system connectivity by selecting a consistent and non-demand-oriented criterion for the design. The metro lines are designed by minimizing passenger transfers through the transit network according to predefined demand node pairs. The design scheme offers a set of ring route alternatives for a sizeable case study in Greater Cairo. The case study selected sixteen traffic analysis zones, an existing metro network consisting of three main lines (113.6 km long), and twelve main bus lines (487.7 km long) for analysis. TransCAD software was used as the basis for coordinating the stations and lines of both the bus and metro systems. Subsequently, a passenger transfer counting algorithm was implemented to determine the number of transfers required between stations from each origin to each destination. A passenger origin-destination transfer matrix was created using the NetBeans integrated development environment to help determine the number of transfers required to complete trips on the transit network before and after proposing the new line. Based on the evaluation, the ring lines were highly efficient at significantly decreasing passenger transfers between stations with the minimum construction cost. This study will be of value during the strategic stages of the transit line design and will assist in rapidly generating initial solutions when certain demand information is unavailable.
机译:连接是大型过境网络中的一个重要问题,因为进行旅行所需的转移数量被过境用户被认为是一个不适。本文通过将现有总线和地铁网络集成到单个连接的传输网络中,提供了一个实用的地铁线规划问题解决方案。该方法旨在在解决运输路线设计问题时避免通常的组合复杂性。它旨在通过选择设计一致和非需求的标准来提高整体过境系统连接。通过根据预定义的需求节点对,通过最大限度地减少乘客传输来设计地铁线路。设计方案提供了一套环形路线替代品,可在大开开店进行相当大的案例研究。案例研究选择了十六个交通分析区,现有的地铁网络包括三条主线(113.6公里长),和十二条主总线(487.7公里长)进行分析。 Transcad软件被用作协调总线和地铁系统的站点和线路的基础。随后,实现了乘客转移计数算法以确定每个原点到每个目的地的站之间所需的传输数量。使用NetBeans集成开发环境创建乘客来源传输矩阵,以帮助确定在提出新行之前和之后完成在运输网络上完成旅行所需的传输数量。基于评价,环线在具有最小施工成本的最低施工成本之间的乘客转移显着降低。该研究在运输线路设计的战略阶段期间的价值将有助于在某些需求信息不可用时快速生成初始解决方案。

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