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A Priority System for Multi-Modal Traffic 1 Signal Control

机译:多模态流量1信号控制的优先级系统

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There are many users of signalized traffic intersections including passenger vehicles, commercial vehicles/trucks, pedestrians, bicycles, transit buses, light rail vehicles, snowplows, and emergency vehicles such as fire trucks and ambulances. North American approaches to traffic signal control are centered on general vehicles with either accommodations for other modes or exceptions for special considerations such as emergency vehicles. This paper presents a unified decision framework for multi-modal traffic signal control that simultaneously considers the needs of different modal users based on wireless communications, as well as traditional detection methods. This framework is based on a mathematical optimization model where each modal traveler can request service using priority requests. The mathematical programming framework allows multiple priority requests to be considered simultaneously based on a hierarchical control policy. In addition to modal users, system-operating principles such as coordination are included as priority requests within the decision framework. The system has been developed and tested using both microscopic traffic simulation and in a live network of six intersections in Anthem, Arizona using emerging technology developments in Connected Vehicle systems. The responsible operating agency must establish a policy for each equipped section of traffic signals that determines the relative importance of different modes of travel. For example, one section might be selected to be pedestrian and transit friendly and another section might be selected to be truck friendly. This priority policy would impact how the signal timing is adapted to accommodate the multiple active requests for priority. This paper explores the ability of the section priority policy within the unified priority control decision framework for multi-modal travelers to provide improved quality of service for each mode within the structure of the priority policy.
机译:有许多用户的信号交通交叉口,包括乘用车,商用车辆/卡车,行人,自行车,运输公共汽车,轻轨车辆,扫地机和燃烧车,如消防车和救护车。北美交通信号控制方法以常用的方式为所有适用于其他模式或特殊考虑因素的例外的通用车辆的中心为中心。本文提出了一个统一的决策框架,用于多模态交通信号控制,同时考虑基于无线通信的不同模态用户的需求,以及传统的检测方法。该框架基于数学优化模型,其中每个模态旅行者可以使用优先级请求请求服务。数学编程框架允许基于分层控制策略同时考虑多个优先级请求。除模态用户外,系统操作原理如协调还被列为决策框架内的优先级请求。使用显微流量仿真和在亚利桑那州的六个交叉点的现场网络中使用微观交通仿真和在亚利桑那州的六个交叉路网络中开发和测试了系统。负责任的经营机构必须为每个配备的交通信号部分建立一项政策,这些交通信号部分决定了不同旅行方式的相对重要性。例如,一个部分可能被选择为行人,交通友好,另一部分可能被选择为卡车友好。此优先级策略将影响信号时序的适于如何适应优先级的多个活动请求。本文探讨了优先级策略在统一优先级控制决策框架内的能力,为多模式旅行者提供了优先级结构中的每种模式的改进的服务质量。

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