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Sensitivity Testing of the Newly Developed Elliptical Fitting Method for the Measurement of Convergence in Tunnels and Shafts

机译:新开发的椭圆拟合方法在隧道和竖井中的敏感性测试

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Light Detection and Ranging (LiDAR) has become more widely used in the geotechnical community as its number of applications increases. It has been shown to be useful in tunneling for applications such as rockmass characterization and discontinuity measurement. LiDAR data can also be used to measure deformation in tunnels, but before a comprehensive methodology can be developed, the accuracy issues associated with scanning must be fully understood. Once the accuracy issues associated with LiDAR are well understood, any analysis technique that uses LiDAR data must be tested to ensure that the determined accuracy issues have minimal impact on the results of the analysis. To prove the usefulness of the newly developed elliptical fitting method for the measurement of convergence in tunnels and shafts proposed by Delaloye et al. (Eurock 2012), a comprehensive analysis of accuracy issues associated with LiDAR scanning was conducted and then a sensitivity test of the convergence measurement technique was completed. The results of the analysis show that using the statistical techniques built into the elliptical fit analysis and LiDAR profile analysis, levels of real change (convergence), within the nominal level of random and systematic noise included in the data, can be measured with confidence. Furthermore, the new analysis is robust enough to handle large amounts of occlusion or missing perimeter coverage within data sets.
机译:随着其应用数量的增加,光探测与测距(LiDAR)已在岩土工程界变得越来越广泛。业已证明,它在诸如岩石质量表征和不连续性测量等应用的隧道中很有用。 LiDAR数据也可以用于测量隧道中的变形,但是在开发全面的方法之前,必须充分了解与扫描相关的精度问题。一旦了解了与LiDAR相关的精度问题,就必须对使用LiDAR数据的任何分析技术进行测试,以确保确定的精度问题对分析结果的影响最小。为了证明新开发的椭圆拟合方法对Delaloye等人提出的隧道和竖井收敛性测量的有用性。 (Eurock 2012),对与LiDAR扫描相关的精度问题进行了全面分析,然后完成了收敛测量技术的灵敏度测试。分析结果表明,使用椭圆拟合分析和LiDAR轮廓分析中内置的统计技术,可以可靠地测量数据中包含的随机噪声和系统噪声的名义水平内的实际变化(收敛)水平。此外,新分析足够强大,可以处理数据集中的大量遮挡或缺少周界覆盖范围。

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