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Region-based prescriptive route guidance for travelers of multiple classes

机译:针对多班旅行者的基于区域的说明性路线指南

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摘要

The performance and complicated interactions of different classes of travelers on regional urban networks are presented and analyzed. A new multi-class extension of a regional dynamic traffic model, the Network Transmission Model is proposed. The classes in question correspond to travelers using autonomous vehicles, conventional vehicles, equipped with Route Guidance and Information Systems, and unequipped vehicles. Each class is represented by a different routing method. Incremental Route Planning, an innovative predictive simulation-based routing method, Proxy Regret Matching, a non-predictive strategic learning-based method and Multinomial Logit-based Routing for 1st, 2nd and 3rd class respectively. All routing methods include a Public Transit Diversion mechanism and are assumed to provide prescriptive route guidance, with pre-trip information dissemination for every departing vehicle. We consider the possibility of non-compliance for conventional vehicles equipped with Route Guidance and Information Systems. We also consider 2 possible scenarios for autonomous vehicles that affect their travel time prediction accuracy. We simulate regional traffic dynamics for simultaneous application of all aforementioned routing methods, employing a market penetration scheme for each class of travelers. We analyze results regarding the overall network performance for various combinations of traveler class market penetration rates and non-compliance rates. We come to the conclusion that autonomous vehicles will not only provide benefits for 1st class travelers, but for all traveler classes on the network.
机译:给出并分析了区域城市网络上不同类别的旅行者的表现和复杂的相互作用。提出了区域动态交通模型的一种新的多类扩展,即网络传输模型。所涉及的类别对应于使用自动驾驶汽车,配备有路线引导和信息系统的常规汽车以及未装备的旅行者。每个类由不同的路由方法表示。增量路由计划,一种创新的基于预测仿真的路由方法,代理后悔匹配,一种非预测性的基于策略学习的方法,以及针对第一,第二和第三类的基于多项式Lo​​git的路由。所有的路线选择方法都包括公共交通改道机制,并假定提供规定的路线指导,并为每辆出发的车辆传播旅行前信息。我们认为,配备了路线指引和信息系统的常规车辆可能会不符合规定。我们还考虑了影响自动驾驶时间预测准确性的两种可能的自动驾驶汽车场景。我们模拟区域交通动态,以同时应用所有上述路由方法,并为每一类旅客采用市场渗透方案。我们分析了有关旅行者舱市场渗透率和违规率的各种组合的整体网络性能的结果。我们得出的结论是,自动驾驶汽车不仅将为头等舱旅行者提供好处,而且还将为网络上的所有旅行者舱位提供好处。

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