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Automated pavement horizontal curve measurement methods based on inertial measurement unit and 3D profiling data

机译:基于惯性测量单元和3D轮廓数据的自动路面水平曲线测量方法

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摘要

Pavement horizontal curve is designed to serve as a transition between straight segments, and its presence may cause a series of driving-related safety issues to motorists and drivers. As is recognized that traditional methods for curve geometry investigation are time consuming, labor intensive, and inaccurate, this study attempts to develop a method that can automatically conduct horizontal curve identification and measurement at network level. The digital highway data vehicle (DHDV) was utilized for data collection, in which three Euler angles, driving speed, and acceleration of survey vehicle were measured with an inertial measurement unit (IMU). The 3D profiling data used for cross slope calibration was obtained with PaveVision3D Ultra technology at 1 mm resolution. In this study, the curve identification was based on the variation of heading angle, and the curve radius was calculated with ki-nematic method, geometry method, and lateral acceleration method. In order to verify the accuracy of the three methods, the analysis of variance (ANOVA) test was applied by using the control variable of curve radius measured by field test. Based on the measured curve radius, a curve safety analysis model was used to predict the crash rates and safe driving speeds at horizontal curves. Finally, a case study on 4.35 km road segment demonstrated that the proposed method could efficiently conduct network level analysis.
机译:路面水平曲线旨在用作直段之间的过渡,并且其存在可能对驾驶者和驾驶员造成一系列与驾驶有关的安全问题。众所周知,传统的曲线几何调查方法既费时,费力又不准确,因此,本研究试图开发一种可以在网络级自动进行水平曲线识别和测量的方法。利用数字公路数据车(DHDV)进行数据收集,其中使用惯性测量单元(IMU)测量了三个Euler角,行驶速度和被测车辆的加速度。使用PaveVision3D Ultra技术以1 mm的分辨率获得用于交叉斜率校准的3D轮廓数据。在这项研究中,曲线识别是基于航向角的变化,并且通过动学方法,几何方法和横向加速度方法来计算曲线半径。为了验证这三种方法的准确性,使用了通过现场测试测得的曲线半径的控制变量进行方差分析(ANOVA)测试。基于测得的曲线半径,曲线安全分析模型用于预测水平曲线的碰撞率和安全行驶速度。最后,通过对4.35 km路段的案例研究表明,该方法可以有效地进行网络水平分析。

著录项

  • 来源
    《交通运输工程学报(英文版)》 |2016年第2期|137-145|共9页
  • 作者单位

    College of Transportation and Civil Engineering, Fujian Agriculture and Forestry University, Fuzhou 350108, China;

    School of Civil and Environmental Engineering, Oklahoma State University, Stillwater, OK 74078, USA;

    College of Transportation and Civil Engineering, Fujian Agriculture and Forestry University, Fuzhou 350108, China;

    School of Civil and Environmental Engineering, Oklahoma State University, Stillwater, OK 74078, USA;

    School of Civil and Environmental Engineering, Oklahoma State University, Stillwater, OK 74078, USA;

  • 收录信息 中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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