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Development and Testing of an Automatic Turning Movement Identification System at Signalized Intersections

机译:信号交叉口自动转弯运动识别系统的开发与测试

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Vehicle turning movement data from signalized intersections is utilized for numerous applications in the field of transportation. Such applications include real-time adaptive signal control, dynamic traffic assignment, and traffic demand estimation. However, it is very time consuming and costly to obtain vehicle turning movement information manually. Previous efforts to simplify this process were focused on solving the problem using an O-D matrix, but this method proved to be inaccurate and unreliable with the existing data acquisition system. Another study involved the identification of vehicle turning movements from the detector information, but the presence of shared lanes led to uncertainties in vehicle matching, thus limiting application of the method only to intersections without shared lanes. In light of those unsuccessful attempts, this paper develops and tests a system called the Automatic Turning Movement Identification System (ATMIS), which estimates vehicle turning movements at a signalized intersection in real time, regardless of its geometry. The results from lab experiments as well as a field test show that the algorithm is very promising and may potentially be expanded for field applications.
机译:来自信号交叉口的车辆转弯运动数据被用于交通领域的众多应用。这样的应用包括实时自适应信号控制,动态交通分配和交通需求估计。然而,手动获得车辆转弯运动信息非常耗时且昂贵。以前简化此过程的努力都集中在使用O-D矩阵解决问题上,但是事实证明,该方法对于现有的数据采集系统而言是不准确且不可靠的。另一项研究涉及从检测器信息中识别车辆转弯运动,但是共享车道的存在导致车辆匹配的不确定性,因此将该方法的应用仅限于没有共享车道的交叉路口。鉴于这些失败的尝试,本文开发并测试了一种称为自动转弯运动识别系统(ATMIS)的系统,该系统实时估计信号交叉口的车辆转弯运动,而不论其几何形状如何。实验室实验和现场测试的结果表明,该算法非常有前途,并且可能会扩展到现场应用。

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