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Paradigms to Deploy a Behavior-Consistent Approach for Information-Based Real-Time Traffic Routing

机译:为基于信息的实时流量路由部署行为一致方法的范例

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A behavior-consistent information-based network control approach determines real-time traffic routing strategies by explicitly accounting for drivers' likely response to the controller-recommended routes while generating these strategies. This paper proposes paradigms to deploy a behavior-consistent approach developed by the authors (Paz and Peeta 2007). These paradigms seek to enhance deployment effectiveness by analyzing the effects of alternative controller objectives and driver-preferred route sets used to recommend routes. Experiments are conducted using a test network. They analyze: (1) the performance of the behavior-consistent approach under commonly-used controller objectives, (2) the deployment flexibility enabled by increasing the number of driver-preferred routes considered by the controller for routing, and (3) the effects of augmenting the driver-preferred route choice set through various paradigms. The results suggest that the behavior-consistent approach can perform better than standard dynamic traffic assignment models while directing the system towards the desired state. They also illustrate the effectiveness of considering more driver-preferred routes in developing the information strategics. Further, they suggest that driver-preferred route choice set augmentation and the associated route types can have differential impacts on performance. Also, performance is influenced by trade-offs between the number of driver-preferred routes considered by the controller for routing and the quality of routes relative to the controller objective. The results suggest that higher compliance rates may not translate to better performance and question the justification of user equilibrium solutions for route guidance on the ground that a system optimal strategy is not behaviorally sustainable.
机译:行为一致的基于信息的网络控制方法通过在生成这些策略时明确考虑驾驶员对控制器推荐的路线的可能响应来确定实时交通路由策略。本文提出了范式来部署作者开发的行为一致方法(Paz和Peeta 2007)。这些范例试图通过分析备用控制器目标和推荐路线的驾驶员首选路线集的效果来提高部署效率。使用测试网络进行实验。他们分析:(1)在常用的控制器目标下,行为一致方法的性能;(2)通过增加控制器考虑用于路由的驱动程序首选路由的数量而实现的部署灵活性;以及(3)效果通过各种范例扩展驾驶员偏爱的路线选择集。结果表明,在将系统引导至所需状态的同时,行为一致方法的性能优于标准动态流量分配模型。它们还说明了在制定信息策略时考虑更多驾驶员偏爱的路线的有效性。此外,他们建议驾驶员偏爱的路线选择集扩充和关联的路线类型可能会对性能产生不同的影响。而且,性能还受到控制器考虑用于路由的驾驶员偏爱路线的数量与相对于控制器目标的路线质量之间的权衡取舍的影响。结果表明,较高的合规率可能不会转化为更好的性能,并以系统最佳策略在行为上不可持续为由,质疑用户均衡解决方案用于路线指引的合理性。

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