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Development of an elliptical fitting algorithm to improve change detection capabilities with applications for deformation monitoring in circular tunnels and shafts

机译:开发椭圆拟合算法以提高变化检测能力,并将其应用于圆形隧道和竖井的变形监测

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摘要

Terrestrial laser scanning, also known as Light Detection and Ranging (LiDAR) is an emerging technology that has many proven uses in the geotechnical engineering community including rockmass characterization, discontinuity measurement and landslide monitoring. One of the newer applications of LiDAR scanning is deformation monitoring and change detection. In tunnels, deformation is traditionally measured using a series of five or more control points installed around the diameter of the tunnel with measurements recorded at regular time intervals. LiDAR provides the ability to obtain a more complete characterization of the tunnel surface, allowing for determination of the mechanism and magnitude of tunnel deformation, as the entire surface of the tunnel is being modeled rather than a fixed set of points. This paper discusses terrestrial LiDAR scanning for deformation mapping of a surface and for cross-sectional closure measurements within an active tunnel using an elliptical fit to data for profile analysis. The methods were found to be accurate to within a few millimeters when measuring 58 mm of diametric difference over an 18.3 m diameter circular profile, even when some sections of the data were removed from the analysis.
机译:地面激光扫描,也称为光探测与测距(LiDAR),是一种新兴技术,已在岩土工程界得到了许多可靠的应用,包括岩体表征,不连续性测量和滑坡监测。 LiDAR扫描的最新应用之一是变形监测和变化检测。传统上,在隧道中,变形是通过在隧道直径周围安装五个或多个控制点来进行测量的,并以规则的时间间隔记录测量结果。 LiDAR提供了对隧道表面进行更完整表征的能力,从而可以确定隧道变形的机理和大小,因为正在对隧道的整个表面进行建模,而不是对固定点进行建模。本文讨论了地面LiDAR扫描,以对表面进行形变映射并在活动隧道内使用椭圆拟合数据进行剖面闭合测量,以进行剖面分析。当在直径为18.3 m的圆形轮廓上测量58 mm的直径差时,即使从分析中删除了部分数据,该方法仍可精确到几毫米。

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