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A Vehicular Mobile Standard Instrument for Field Verification of Traffic Speed Meters Based on Dual-Antenna Doppler Radar Sensor

机译:基于双天线多普勒雷达传感器的交通仪表现场验证的车辆移动标准仪器

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摘要

Traffic speed meters are important legal measuring instruments specially used for traffic speed enforcement and must be tested and verified in the field every year using a vehicular mobile standard speed-measuring instrument to ensure speed-measuring performances. The non-contact optical speed sensor and the GPS speed sensor are the two most common types of standard speed-measuring instruments. The non-contact optical speed sensor requires extremely high installation accuracy, and its speed-measuring error is nonlinear and uncorrectable. The speed-measuring accuracy of the GPS speed sensor is rapidly reduced if the amount of received satellites is insufficient enough, which often occurs in urban high-rise regions, tunnels, and mountainous regions. In this paper, a new standard speed-measuring instrument using a dual-antenna Doppler radar sensor is proposed based on a tradeoff between the installation accuracy requirement and the usage region limitation, which has no specified requirements for its mounting distance and no limitation on usage regions and can automatically compensate for the effect of an inclined installation angle on its speed-measuring accuracy. Theoretical model analysis, simulated speed measurement results, and field experimental results compared with a GPS speed sensor with high accuracy showed that the dual-antenna Doppler radar sensor is effective and reliable as a new standard speed-measuring instrument.
机译:交通速度计是重要的法律测量仪器,专门用于交通速度执行,每年必须使用车辆移动标准速度测量仪器在现场进行测试和验证,以确保速度测量性能。非接触式光学速度传感器和GPS速度传感器是最常见的标准速度测量仪器类型。非接触式光学速度传感器需要极高的安装精度,其速度测量误差是非线性和不可纠正的。如果所接收的卫星量足够足够的量,GPS速度传感器的速度测量精度会迅速降低,这通常发生在城市高层地区,隧道和山区。本文采用了一种新的标准速度测量仪,基于安装精度要求与使用区域限制之间的权衡,对其安装距离没有规定的要求,并且对使用没有限制,提出了一种基于双天线多普勒雷达传感器。区域,并且可以自动补偿倾斜安装角度对其速度测量精度的影响。理论模型分析,模拟速度测量结果和现场实验结果与具有高精度的GPS速度传感器相比,双天线多普勒雷达传感器作为新标准速度测量仪器有效可靠。

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