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An Ultrasonic Sensor System Based on a Two-Dimensional State Method for Highway Vehicle Violation Detection Applications

机译:基于二维状态法的超声波传感器系统在公路车辆违章检测中的应用

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摘要

With the continuing growth of highway construction and vehicle use expansion all over the world, highway vehicle traffic rule violation (TRV) detection has become more and more important so as to avoid traffic accidents and injuries in intelligent transportation systems (ITS) and vehicular ad hoc networks (VANETs). Since very few works have contributed to solve the TRV detection problem by moving vehicle measurements and surveillance devices, this paper develops a novel parallel ultrasonic sensor system that can be used to identify the TRV behavior of a host vehicle in real-time. Then a two-dimensional state method is proposed, utilizing the spacial state and time sequential states from the data of two parallel ultrasonic sensors to detect and count the highway vehicle violations. Finally, the theoretical TRV identification probability is analyzed, and actual experiments are conducted on different highway segments with various driving speeds, which indicates that the identification accuracy of the proposed method can reach about 90.97%.
机译:随着世界范围内高速公路建设的持续增长和车辆使用的扩展,避免智能交通运输系统(ITS)和特设车辆中的交通事故和伤害变得越来越重要,高速公路车辆交通违章检测(TRV)变得越来越重要。网络(VANET)。由于通过移动车辆测量和监视设备来解决TRV检测问题的工作很少,因此本文开发了一种新颖的并行超声传感器系统,可用于实时识别主车辆的TRV行为。然后,提出了一种二维状态方法,利用两个并行超声传感器的数据中的空间状态和时间顺序状态来检测和计数高速公路车辆违规情况。最后,对理论上的TRV识别概率进行了分析,并在不同的高速公路段上以不同的行驶速度进行了实际实验,表明该方法的识别精度可以达到90.97%左右。

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