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Study of the LiDAR accuracy in mapping forest road alignments and estimating the earthwork volume

机译:研究LiDAR在绘制森林道路路线和估算土方量方面的准确性

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Today, differential geographical position system and total station devices are improving the accuracy of positioning information, but in critical locations such as steep slopes and closed canopy cover, the device accuracy is limited. Moreover, field surveying in this technique is time-consuming and expensive. For this reason, remote sensing technique such as light detection and ranging (LiDAR) laser scanner should be used in field measurements. The objective of this study was to evaluate and compare precision and time expenditure of total station and airborne LiDAR in producing horizontal and vertical alignments and estimating earthwork volume of two proposed forest roads in a deciduous forest of Iran. To investigate this task, the geographical position of proposed forest roads were detected by differential geographical position system and then marked on land. Mentioned roads were taken again with Leica Total Station (LTS) on control points with same 5 m intervals from start point. Recent data served as a reference value for comparison with LiDAR measurements. The data were processed in Civil 3D, Fusion and Leica geo office software. Results showed that in comparison to field-surveyed routes by LTS, the LiDAR-derived routes exhibited a horizontal accuracy of 0.23 and 0.47 m and vertical accuracy of 0.31 and 0.66 m for road 1 and road 2, respectively. The LiDAR-derived sections every 1 m exhibited cut and fill accuracy of 2.39 and 3.18 msup3/sup for road 1 and 2.98 and 5.60 msup3/sup road 2, respectively. In this study, it was proved that the road project can be prepared faster by LiDAR than that of LTS. Therefore, high accuracy of road projection by LiDAR is useful for terrain analysis without the need for field reconnaissance.
机译:如今,差分地理位置系统和全站仪设备正在提高定位信息的准确性,但是在诸如陡坡和封闭的树冠覆盖等关键位置,设备的精度受到限制。而且,用这种技术进行现场勘测既费时又昂贵。因此,在现场测量中应使用诸如光检测和测距(LiDAR)激光扫描仪之类的遥感技术。这项研究的目的是评估和比较全站仪和机载LiDAR在产生水平和垂直路线以及估算伊朗落叶林中两条拟建林道的土方量方面的精度和时间支出。为了调查此任务,通过差分地理位置系统检测了拟建林道的地理位置,然后在土地上进行了标记。徕卡全站仪(LTS)再次在与起点相同的5 m间隔的控制点上选择了道路。最新数据用作与LiDAR测量值进行比较的参考值。数据在Civil 3D,Fusion和Leica geo office软件中进行处理。结果表明,与LTS实地调查的路线相比,源自LiDAR的路线在1号公路和2号公路上的水平精度分别为0.23和0.47 m,垂直精度分别为0.31和0.66 m。每1 m的LiDAR派生切片分别对1号道路和2.98和5.60 m 3 道路2的切割和填充精度分别为2.39和3.18 m 3 。在这项研究中,证明了LiDAR可以比LTS更快地准备道路项目。因此,通过LiDAR进行道路投影的高精度可用于地形分析,而无需现场侦察。

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