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Dynamic route choice behaviour and simulation-based dynamic traffic assignment model for mixed traffic flows

机译:动态路径选择行为及基于仿真的混合交通流动态分配模型

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摘要

Intelligent Transportation Systems (ITS) focus on increasing the efficiency of existing surface transportation systems through the use of advanced computers, electronics, and communication technologies. In order to perform advanced traffic management and provide travel information, dynamic traffic assignment models need to be developed to provide time-dependent estimates of traffic flows on networks in order to efficiently utilize possible advanced traffic information as well as traffic control measures. Traffic assignment distributes Origin-Destination (OD) trips in a network and determines the flow patterns in a traffic network. This research aims at developing simulation-based algorithm for dynamic traffic assignment problems under mixed traffic flow considerations. Four different physical vehicle types are explicitly considered and modeled, including car, bus, motorcycle, and truck. Four different behavioral rules, pre-specified-path driver, user-equilibrium driver, system-optimization driver, and real-time information driver, are considered in the solution procedure. The DTA algorithm consists of an inner loop that incorporates a direction finding mechanism for the search process for System Optimization (SO) and User Equilibrium (UE) classes based on the simulation results of the current iteration, including experienced vehicular trip times and marginal trip times. In order to understand tripmaker acceptance toward route guidance, a survey is conducted to explore possible behavioral classifications and associated percentages. Numerical experiments are conducted in a test network and a real city network to illustrate the capabilities of the simulation-based DTA procedures, and to observe how system performs under multiple user class's conditions, including multiple user behavior rules and multiple physical vehicle classes.
机译:智能运输系统(ITS)致力于通过使用先进的计算机,电子产品和通信技术来提高现有地面运输系统的效率。为了执行高级交通管理并提供旅行信息,需要开发动态交通分配模型以提供网络上交通流量的时间相关估计,以便有效利用可能的高级交通信息以及交通控制措施。流量分配可在网络中分配始发地(OD)行程,并确定流量网络中的流量模式。这项研究的目的是针对混合交通流考虑,为动态交通分配问题开发基于仿真的算法。明确考虑和建模了四种不同的物理车辆类型,包括汽车,公共汽车,摩托车和卡车。解决方案过程中考虑了四种不同的行为规则,即预先指定的路径驱动程序,用户平衡驱动程序,系统优化驱动程序和实时信息驱动程序。 DTA算法由一个内部循环组成,该内部循环包含一个方向查找机制,用于根据当前迭代的模拟结果(包括经验丰富的车辆行程时间和边际行程时间)对系统优化(SO)和用户平衡(UE)类进行搜索。为了了解旅行者对路线引导的接受程度,进行了一项调查以探讨可能的行为分类和相关百分比。在测试网络和真实城市网络中进行了数值实验,以说明基于仿真的DTA程序的功能,并观察系统在多个用户类别条件下(包括多个用户行为规则和多个物理车辆类别)的性能。

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