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首页> 外文期刊>Procedia - Social and Behavioral Sciences >Design and Implementation of Efficient Transit Networks: Procedure, Case Study and Validity Test
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Design and Implementation of Efficient Transit Networks: Procedure, Case Study and Validity Test

机译:高效公交网络的设计与实现:程序,案例研究和有效性测试

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摘要

This paper presents and tests a method to design high-performance transit networks. The method produces conceptual plans for geometric idealizations of a particular city that are later adapted to the real conditions. These conceptual plans are generalizations of the hybrid network concept proposed in Daganzo (2010). The best plan for a specific application is chosen via optimization. The objective function is composed of analytic formulae for a concept‘s agency cost and user level of service. These formulae include as parameters key demand-side attributes of the city, assumed to be rectangular, and supply-side attributes of the transit technology. They also include as decision variables the system‘s line and stop spacings, the degree to which it focuses passenger trips on the city center, and the service headway. These decision variables are sufficient to define an idealized geometric layout of the system and an operating plan. This layout-operating plan is then used as a design target when developing the real, detailed master plan. Ultimately, the latter is simulated to obtain more accurate cost and level of service estimates.This process has been applied to design a high performance bus (HPB) network for Barcelona (Spain). The idealized solution for Barcelona includes 182km of one-way infrastructure, uses 250 vehicles and costs 42,489 €/h to build and run. These figures only amount to about one third of the agency resources and cost currently used to provide bus service. A detailed design that resembles this target and conforms to the peculiarities of the city is also presented and simulated. The agency cost and user level of service metrics of the simulated system differ from those of the idealized model by less than 10%. Although the designed and simulated HPB systems provide sub-optimal spatial coverage because Barcelona lacks suitable streets, the level of service is good. Simulations suggest that if the proposed system was implemented side-by-side with the current one, it would capture most of the demand.
机译:本文提出并测试了一种设计高性能传输网络的方法。该方法产生用于特定城市的几何理想化的概念计划,该计划随后适合于实际条件。这些概念计划是Daganzo(2010)中提出的混合网络概念的概括。通过优化选择针对特定应用的最佳计划。目标函数由概念代理费用和用户服务水平的分析公式组成。这些公式包括假定为矩形的城市关键需求侧属性和公交技术的供给侧属性作为参数。它们还包括系统的行距和站距,其将旅客旅行集中到市中心的程度以及服务进度作为决策变量。这些决策变量足以定义系统和操作计划的理想几何布局。然后,在制定真实,详细的总体计划时,将此布局操作计划用作设计目标。最终,对后者进行仿真以获取更准确的成本和服务水平估计。此过程已应用于为巴塞罗那(西班牙)设计高性能总线(HPB)网络。巴塞罗那的理想解决方案包括182公里的单向基础设施,使用250辆车,建造和运行成本为42,489欧元/小时。这些数字仅占目前用于提供公共汽车服务的代理资源和费用的三分之一。还提出并模拟了类似于该目标并符合城市特点的详细设计。模拟系统的代理成本和用户服务水平指标与理想模型的差异不到10%。尽管设计和模拟的HPB系统由于巴塞罗那缺乏合适的街道而提供了次优的空间覆盖范围,但是服务水平还是不错的。仿真表明,如果所提议的系统与当前系统并排实施,它将捕获大部分需求。

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