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THE FEEDER BUS ROUTE DESIGN PROBLEM (TRANSIT VEHICLE ROUTING, BUS NETWORK DESIGN).

机译:馈线公交线路设计问题(运输车辆路线,公交网络设计)。

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摘要

The U.S. transit industry is in a financial crisis, caused primarily by the rising operating cost and shrinking resources. Among the deficit-reducing strategies that have been proposed, a better integrated transit system has significant advantages in that it offers the possibility of simultaneously reducing cost and increasing revenue. This research develops an optimization-based methodology for the design of an integrated feeder bus/rail transit system. The proposed methodology includes two types of models, an analytic model and a network model.; The study defines the Feeder Bus Route Design Problem (FBRDP) as that of locating bus routes and bus stops as well as determining the service characteristics of a feeder bus system, designed to access an existing rail system. The proposed analytic model provides approximate values for the optimal route density, operating headway and bus stop spacing. Within the network approach, we consider demand with a single (many-to-one) and with multiple (many-to-many) destinations. We develop a conceptual representation of the many-to-one FBRDP as a spanning tree network, which enables us to formulate the problem as a nonlinear programming model with integer variables. The model is then generalized to the many-to-many FBRDP. We show that the proposed mathematical programming models can represent both the short-run and long-run problems.; The network optimization models for the FBRDP are routing-type models which cannot be solved exactly and need to be solved heuristically. We develop a two-phase heuristic which can be viewed as a generalization of the sequential-savings approach to vehicle routing in that (1) it determines not only the route structure but also the operating frequencies, and (2) it represents the more general FBRDP objective of finding the optimal balance between user and operator costs. An analysis is performed to validate the proposed models and their capabilities as strategic planning tools for the design of a feeder bus network. The proposed models are shown to provide consistent and reasonable responses to changes. Our analysis shows that changes which increase the relative weight of user cost often result in a network with more circuitous routes operated at higher frequency with shorter wait time at bus stops.
机译:美国运输行业正处于金融危机中,其主要原因是运营成本上升和资源萎缩。在已经提出的减少赤字的策略中,更好的综合运输系统具有显着的优势,因为它提供了同时降低成本和增加收入的可能性。这项研究开发了一种基于优化的方法来设计集成的支线公交车/铁路运输系统。所提出的方法包括两种类型的模型:分析模型和网络模型。该研究将支线公交路线设计问题(FBRDP)定义为定位公交路线和公交车站以及确定旨在访问现有铁路系统的支线公交系统服务特征的问题。所提出的分析模型为最佳路线密度,运行车距和公交车站间距提供了近似值。在网络方法中,我们考虑具有单个(多对一)和多个(多对多)目的地的需求。我们开发了多对一FBRDP作为生成树网络的概念表示,这使我们能够将问题表达为带有整数变量的非线性规划模型。然后将模型推广到多对多FBRDP。我们表明,提出的数学编程模型可以代表短期和长期问题。 FBRDP的网络优化模型是路由类型的模型,无法精确求解,需要进行启发式求解。我们开发了一种两阶段启发式方法,可以将其视为对车辆路线进行顺序节省的方法的概括,其中(1)它不仅确定路线结构,而且确定操作频率,并且(2)代表更普遍的方法FBRDP的目标是在用户和运营商成本之间找到最佳平衡。进行分析以验证提出的模型及其作为设计馈线网络的战略规划工具的能力。所提出的模型显示出可以对变化提供一致且合理的响应。我们的分析表明,增加用户成本相对权重的变化通常会导致网络中的circuit回路线更多,运行频率更高,公交车站的等待时间更短。

著录项

  • 作者

    KUAH, GEOK KOON.;

  • 作者单位

    University of Maryland College Park.;

  • 授予单位 University of Maryland College Park.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 220 p.
  • 总页数 220
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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