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Portable Roadside Sensors for Vehicle Counting, Classification, and Speed Measurement

机译:用于车辆计数,分类和速度测量的便携式路边传感器

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This paper focuses on the development of a portable roadside magnetic sensor system for vehicle counting, classification, and speed measurement. The sensor system consists of wireless anisotropic magnetic devices that do not require to be embedded in the roadway-the devices are placed next to the roadway and measure traffic in the immediately adjacent lane. An algorithm based on a magnetic field model is proposed to make the system robust to the errors created by larger vehicles driving in the nonadjacent lane. These false calls cause an 8% error if uncorrected. The use of the proposed algorithm reduces this error to only 1%. Speed measurement is based on the calculation of the cross correlation between longitudinally spaced sensors. Fast computation of the cross correlation is enabled by using frequency-domain signal processing techniques. An algorithm for automatically correcting for any small misalignment of the sensors is utilized. A high-accuracy differential Global Positioning System is used as a reference to measure vehicle speeds to evaluate the accuracy of the speed measurement from the new sensor system. The results show that the maximum error of the speed estimates is less than 2.5% over the entire range of 5-27 m/s (11-60 mi/h). Vehicle classification is done based on the magnetic length and an estimate of the average vertical magnetic height of the vehicle. Vehicle length is estimated from the product of occupancy and estimated speed. The average vertical magnetic height is estimated using two magnetic sensors that are vertically spaced by 0.25 m. Finally, it is shown that the sensor system can be used to reliably count the number of right turns at an intersection, with an accuracy of 95%. The developed sensor system is compact, portable, wireless, and inexpensive. Data are presented from a large number of vehicles on a regular busy urban road in the Twin Cities, MN, USA.
机译:本文着重于便携式路边磁传感器系统的发展,该系统可用于车辆计数,分类和速度测量。该传感器系统由无线各向异性磁性设备组成,这些设备不需要嵌入到巷道中-这些设备放置在巷道旁边,并测量紧邻车道的交通状况。提出了一种基于磁场模型的算法,以使系统对较大车辆在非相邻车道上行驶所产生的错误具有鲁棒性。如果不更正,这些错误的调用将导致8%的错误。使用所提出的算法可将这一误差降低到仅1%。速度测量基于纵向间隔传感器之间的互相关计算。通过使用频域信号处理技术,可以快速计算互相关。利用一种算法来自动校正传感器的任何微小偏差。高精度差分全球定位系统用作测量车速的参考,以评估新传感器系统测速的准确性。结果表明,在5-27 m / s(11-60 mi / h)的整个范围内,速度估计的最大误差小于2.5%。根据磁性长度和车辆平均垂直磁性高度的估计值对车辆进行分类。车辆长度是根据占用率和估算速度的乘积估算的。使用两个垂直间隔0.25 m的磁传感器估算平均垂直磁高。最后,显示出该传感器系统可用于可靠地计算交叉路口的右转弯次数,准确度为95%。开发的传感器系统紧凑,便携式,无线且便宜。在美国明尼苏达州双城的一条繁忙的城市常规道路上,大量车辆提供了数据。

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