需求自适应交通系统的单线设计问题:静态需求情况下的建模框架和分解方法

F. Errico, T. Crainic, F. Malucelli, M. Nonato
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引用次数: 4

摘要

在交通需求较低或较少的情况下,传统交通由于其固定的结构,无法提供高效、优质的服务。由于这个原因,公共交通正朝着某种程度的灵活性发展。“叫车”系统向大众的推广虽然满足了这种适应性的需要,但也存在一些缺点,主要与它们的极端灵活性有关。因此,新的交通替代方案,如需求适应系统(das),结合了传统交通和随叫随到的特点,已经被引入。由于das具有两面性,因此需要仔细规划。我们通过形式化具有固定需求的单线DAS设计问题,并为其解决方案提出两种可选的分层分解方法,专注于规划过程的战术方面。这项工作背后的主要动机是提供一种通用的方法,适合用作在现实条件下构建战术DAS计划的工具。我们提供了一个实验研究,比较了两种提出的分解方法,并分析了改变一些设计参数时系统的一般行为。此外,我们在现实生活中可能遇到的各种情况下测试了我们方法的多功能性。
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The Single-Line Design Problem for Demand-Adaptive Transit Systems: A Modeling Framework and Decomposition Approach for the Stationary-Demand Case
When demand for transportation is low or sparse, traditional transit cannot provide efficient and good-quality service, because of its fixed structure. For this reason, mass transit is evolving toward some degree of flexibility. Although the extension of Dial-a-Ride systems to general public meets such need of adaptability, it presents several drawbacks mostly related to the their extreme flexibility. Consequently, new transportation alternatives, such as demand-adaptive systems (DASs), combining characteristics from both the traditional transit and Dial-a-Ride, have been introduced. For their twofold nature, DASs require careful planning. We focus on tactical aspects of the planning process by formalizing the single-line DAS design problem with stationary demand and proposing two alternative hierarchical decomposition approaches for its solution. The main motivation behind this work is to provide a general methodology suitable to be used as a tool to build the tactical DAS plan in real-life conditions. We provide an experimental study where the two proposed decomposition methods are compared and the general behavior of the systems is analyzed when altering some design parameters. Furthermore, we test the versatility of our methods on a variety of situation that may be encountered in real-life conditions.
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