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Microscopic simulation-based validation of a per-lane traffic state estimation scheme for highways with connected vehicles

机译:基于微观仿真的带连接车辆的高速公路每车道交通状态估计方案的验证

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摘要

This study presents a thorough microscopic simulation investigation of a recently developed model-based approach for per-lane density estimation, as well as on-ramp and off-ramp flow estimation, for highways in the presence of connected vehicles. The estimation methodology is mainly based on the assumption that a certain percentage of vehicles is equipped with Vehicle Automation and Communication Systems (VACS), which provide the necessary measurements used by the estimator, namely vehicle speed and position measurements. In addition, a minimum number of conventional flow detectors is needed. In the investigation, a calibrated and validated, with real data, microscopic multi-lane model is employed, which concerns a stretch of motorway A20 from Rotterdam to Gouda in the Netherlands. It is demonstrated that the proposed methodology provides satisfactory estimation performance even for low penetration rates of connected vehicles, while it is also shown that the method is little sensitive to the parameters (two in total) of the model utilized by the estimator.
机译:这项研究对最近开发的基于模型的方法进行了彻底的微观仿真研究,该方法用于在有连接车辆的情况下对高速公路的车道密度估算以及匝道和匝道流量估算。估算方法主要基于以下假设:一定比例的车辆配备了车辆自动化和通信系统(VACS),该系统提供了估算器使用的必要度量,即车辆速度和位置度量。另外,需要最少数量的常规流量检测器。在调查中,使用经过校准和验证的微观多车道模型(具有真实数据),该模型涉及从荷兰鹿特丹到古达的A20高速公路。证明了所提出的方法即使对于低连接车辆的穿透率也能提供令人满意的估计性能,同时还表明该方法对估计器使用的模型的参数(总共两个)几乎不敏感。

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