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Distributed and adaptive traffic signal control within a realistic traffic simulation

机译:现实交通模拟中的分布式和自适应交通信号控制

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As traffic congestion rises within urban centers around the world, the intelligent control of traffic signals within cities is becoming increasingly important. Previous research within the area of intelligent traffic signal control has several shortcomings, including a reliance on historical data, the use of centralized systems which cannot handle city-sized problem instances and solutions which are not capable of addressing real-world traffic scenarios (e.g., constantly varying volumes and complex network structures). The research reported here proposes algorithms capable of controlling traffic signals that rely on traffic observations made by available sensor devices and local communication between traffic lights. This solution allows signals to be updated frequently to match current traffic demand, while also allowing for significantly large problem sizes to be addressed. To evaluate the developed system, a realistic traffic model was developed using information supplied by the City of Ottawa, Canada. It was found, through simulation within the SUMO traffic simulation environment, that the proposed adaptive system resulted in higher overall network performance when compared to the current fixed signal plan controllers, which were recreated using information from the City of Ottawa. This work also includes examples of why fixed signal controllers are inferior to an adaptive control system.
机译:随着世界各地城市中心内交通拥堵的加剧,城市内交通信号的智能控制变得越来越重要。先前在智能交通信号控制领域的研究存在一些缺点,包括对历史数据的依赖,使用无法处理城市规模的问题实例的集中式系统以及无法解决现实交通场景的解决方案(例如,不断变化的数量和复杂的网络结构)。此处报道的研究提出了一种能够控制交通信号的算法,该算法依赖于可用传感器设备进行的交通观察以及交通信号灯之间的本地通信。该解决方案允许频繁更新信号以匹配当前的流量需求,同时还可以解决非常大的问题。为了评估已开发的系统,使用加拿大渥太华市提供的信息开发了一种现实的交通模型。通过SUMO交通仿真环境中的仿真发现,与使用渥太华市信息重新创建的当前固定信号计划控制器相比,所提出的自适应系统具有更高的整体网络性能。这项工作还包括为什么固定信号控制器不如自适应控制系统的示例。

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