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MULTIFUNCTION LIDAR SENSORS FOR NON-CONTACT SPEED MEASUREMENT IN RAIL VEHICLES, PART 2: DATA COLLECTION AND ANALYSIS

机译:用于轨道车辆的非接触式速度测量的多功能激光雷达传感器,第2部分:数据收集和分析

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The application of Doppler based, LIght Detection And Ranging (LIDAR or lidar) technology for measuring true ground speed in a non-contacting manner is investigated, as a replacement to wheel tachometers that are commonly used for such measurements. Measuring track speed and distance traveled is an essential part of rail geometry measurement systems. Wheel tachometer measurement accuracy can often be adversely affected by wheel vibrations, change in wheel diameter, and wheel slip in high traction conditions. LIDAR is a non-contact measurement device that uses the Doppler technology to accurately determine speed. Two LIDAR sensors are attached to the underside of a track geometry car with the sensors' Class I laser beams facing the gauge corner of each rail. The LIDAR sensors measure the absolute ground speed for each rail, allowing for the determination of forward speed and track curvature. The results of the tests show high accuracy in LIDAR speed, distance, and track curvature measurements when compared with other conventional means that are used in the railroad industry and ground truth measurements. With further development, LIDAR sensors can replace wheel tachometers that are commonly used for speed and distance measurement, therefore eliminating the problems with mechanical reliability and the need for periodic calibration of wheel tachometers.
机译:研究了多普勒的光检测和测距(LIDAR或LIDAR)技术以非接触方式测量真正的地速的应用,作为常用于这种测量的车轮转车计的替代物。测量轨道速度和行驶距离是轨道几何测量系统的重要组成部分。车轮转速表测量精度通常可能受到轮振,轮径变化的不利影响,在高牵引条件下的车轮滑动。 LIDAR是一种非接触式测量装置,使用多普勒技术准确地确定速度。两个激光器传感器与轨道几何轿厢的底部连接,传感器的I类激光束面向每个轨道的量角。 LIDAR传感器测量每个轨道的绝对地速度,允许确定前进速度和轨道曲率。与铁路工业中使用的其他常规手段相比,试验结果表现出LIDAR速度,距离和跟踪曲率测量的高精度。通过进一步的开发,LIDAR传感器可以取代通常用于速度和距离测量的车轮转速计,因此消除了机械可靠性的问题,并且需要对车轮转车计的周期性校准。

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