Department of Electronics Engineering, Kaunas University of Technology, Studentu St. 50-438, LT-51368 Kaunas, Lithuania.
Department of Signal Theory and Communications-atlanTTic Research Center, University of Vigo, 36310 Vigo, Spain.
Sensors (Basel). 2021 Nov 26;21(23):7872. doi: 10.3390/s21237872.
Reliable cost-effective traffic monitoring stations are a key component of intelligent transportation systems (ITS). While modern surveillance camera systems provide a high amount of data, due to high installation price or invasion of drivers' personal privacy, they are not the right technology. Therefore, in this paper we introduce a traffic flow parameterization system, using a built-in pavement sensing hub of a pair of AMR (anisotropic magneto resistance) magnetic field and MEMS (micro-electromechanical system) accelerometer sensors. In comparison with inductive loops, AMR magnetic sensors are significantly cheaper, have lower installation price and cause less intrusion to the road. The developed system uses magnetic signature to estimate vehicle speed and length. While speed is obtained from the cross-correlation method, a novel vehicle length estimation algorithm based on characterization of the derivative of magnetic signature is presented. The influence of signature filtering, derivative step and threshold parameter on estimated length is investigated. Further, accelerometer sensors are employed to detect when the wheel of vehicle passes directly over the sensor, which cause distorted magnetic signatures. Results show that even distorted signatures can be used for speed estimation, but it must be treated with a more robust method. The database during the real-word traffic and hazard environmental condition was collected over a 0.5-year period and used for method validation.
可靠且具有成本效益的交通监测站是智能交通系统 (ITS) 的关键组成部分。虽然现代监控摄像系统提供了大量的数据,但由于安装价格高或侵犯驾驶员的个人隐私,它们并不是合适的技术。因此,在本文中,我们介绍了一种使用内置的路面感应集线器的交通流量参数化系统,该系统由一对各向异性磁阻 (AMR) 磁场和微机电系统 (MEMS) 加速度计传感器组成。与感应线圈相比,AMR 磁传感器价格便宜得多,安装价格更低,对道路的干扰也更小。所开发的系统使用磁签名来估计车辆速度和长度。速度是通过互相关方法获得的,而提出了一种基于磁签名导数特征的新的车辆长度估计算法。研究了签名滤波、导数步长和阈值参数对估计长度的影响。此外,加速度计传感器用于检测车辆的车轮何时直接经过传感器,这会导致磁签名失真。结果表明,即使是失真的签名也可用于速度估计,但必须采用更稳健的方法。在为期 0.5 年的时间里,在真实交通和危险环境条件下收集了数据库,并用于方法验证。