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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Vehicular Traffic Surveillance and Road Lane Detection Using Radar Interferometry
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Vehicular Traffic Surveillance and Road Lane Detection Using Radar Interferometry

机译:雷达干涉法进行车辆交通监控和行车道检测

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摘要

Speed enforcement on public roadways is an important issue in order to guarantee road security and to reduce the number and seriousness of traffic accidents. Traditionally, this task has been partially solved using radar and/or laser technologies and, more recently, using video-camera based systems. All these systems have significant shortcomings that have yet to be overcome. The main drawback of classical Doppler radar technology is that the velocity measurement fails when several vehicles are in the radars beam. Modern radar systems are able to measure speed and range between vehicle and radar. However, this is not enough to discriminate the lane where the vehicle is driving on. The limitation of several vehicles in the beam is overcome using laser technology. However, laser systems have another important limitation: They cannot measure the speed of several vehicles simultaneously. Novel video-camera systems, based on license plate identification, solve the previous drawbacks, but they have the problem that they can only measure average speed but never top-speed. This paper studies the feasibility of using an interferometric linear frequency modulated continuous wave radar to improve top-speed enforcement on roadways. Two different systems based on down-the-road and across-the-road radar configurations are presented. The main advantage of the proposed solutions is they can simultaneously measure speed, range, and lane of several vehicles, allowing the univocal identification of the offenders. A detailed analysis about the operation and accuracy of these solutions is reported. In addition, the feasibility of the proposed techniques has been demonstrated with simulations and real experiments using a Ka-band interferometric radar developed by our research group.
机译:为了保证道路安全并减少交通事故的数量和严重性,公共道路上的速度执行是重要的问题。传统上,使用雷达和/或激光技术以及最近使用基于摄像机的系统已部分解决了此任务。所有这些系统都具有尚待克服的重大缺陷。经典多普勒雷达技术的主要缺点是,当几辆车进入雷达波束时,速度测量失败。现代雷达系统能够测量车辆与雷达之间的速度和范围。然而,这还不足以区分车辆正在行驶的车道。使用激光技术可以克服光束中几辆车的局限性。但是,激光系统还有另一个重要的局限性:它们不能同时测量多辆车的速度。基于车牌识别的新型摄像机系统解决了以前的缺点,但是它们的问题是只能测量平均速度,而不能测量最高速度。本文研究了使用干涉式线性调频连续波雷达来改善道路最高速度执法的可行性。提出了两种基于越野和跨路雷达配置的系统。所提出的解决方案的主要优点是它们可以同时测量几辆车的速度,范围和车道,从而可以明确识别违法者。报告了有关这些解决方案的操作和准确性的详细分析。此外,使用我们研究小组开发的Ka波段干涉雷达,通过仿真和实际实验证明了所提出技术的可行性。

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