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Queue length estimation from connected vehicles with range measurement sensors at traffic signals

机译:在交通信号处具有范围测量传感器的连接车辆的队列长度估计

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This paper presents a method for queue length estimation from connected vehicles equipped with range measurement sensors such as light detection and ranging, stereo camera, and ultrasonic. Simple plug-and-play models are developed for queue length estimations that do not require ground truth queue lengths. The proposed method is simple to implement and can be adopted to cyclic queues like traffic signals with known phase lengths. The models are evaluated with microscopic traffic simulations and connected vehicle field test data. Compared to queue length estimations without range sensors, the numerical experiments performed using microsimulations show that the model with range sensors improves the errors by 25% in variance-to-mean ratio and 5% in coefficient of variation at less than 20% market penetration rates. Using the connected vehicle field test data, it is observed that the fusing range sensor can improve close to 10% without sensor estimators, 30% of the queue back, and 48% of the Highway Capacity Manual's control delay-based estimations at about 25% market penetration rate.
机译:本文介绍了从配备有范围测量传感器的连接车辆的队列长度估计的方法,例如光检测和测距,立体声相机和超声波。为队列长度估算开发了简单的即插即用型号,不需要地理队列长度。所提出的方法易于实现,并且可以采用与具有已知相长的交通信号等循环队列。使用微观流量模拟和连接的车辆现场测试数据进行评估。与没有范围传感器的队列长度估计相比,使用微杂散进行的数值实验表明,具有范围传感器的模型将误差提高25%,差异为25%,变化系数为5%,低于20%的市场渗透率。使用连接的车辆现场测试数据,观察到定影范围传感器可以在没有传感器估计的情况下改善接近10%,队列的30%,高速公路容量手册的48%基于控制延迟的估计约为25%市场渗透率。

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