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Real-Time Change and Damage Detection of Landslides and Other Earth Movements Threatening Public Infrastructure

机译:威胁公共基础设施的山体滑坡和其他地球运动的实时变化和损伤检测

摘要

Geologic hazards such as coastal erosion, landslides, seismic loading, etc. constantly threaten public highway construction and maintenance. Repeat surveys using terrestrial laser scanning (TLS, ground-based LiDAR) enable rapid 3D data acquisition to map, see, analyze, and understand the processes generating such problems. Previously, change detection and analysis between scan surveys was conducted during post-processing upon return to the office, instead of while collecting data in the field. Change detection in the field improves the effectiveness and efficiency of the field investigation. We have developed a new algorithm that quickly geo-references scans upon field acquisition and simultaneously performs change detection by comparing these newly acquired scans to baseline models.This algorithm has been integrated with a simple, intuitive GUI that enables change detection to be completed quickly (scan) while data are being acquired in the field. This software has also been enhanced to ensure a productive workflow.Implementation and testing of the algorithm is underway at several sites that have been problematic for state agencies. Two test sites showing active movement are along Highway 101 in Oregon. These are the Spencer Creek Bridge site and the Johnson Creek landslide. An additional trial site is the US20 Pioneer-Eddyville highway realignment project, where several active landslides and surficial slope failures of embankment fill slopes have significantly disrupted construction efforts. Substantial baseline information at these sites was collected, which will be useful for future Oregon Department of Transportation and Oregon Department of Geology and Mineral Industries studies.Performing change detection in the field offers several significant advantages to current post-processing workflows. First, field change detection serves as an augmented reality system, enabling field crews and researchers to see immediate results, on site, so that they are able to make key observations while present at the site, instead of being reliant on their personal memories or notes. Second, and importantly, it can improve the overall efficiency of the survey. When this information is available to the operator during field data acquisition, areas of minimal change can be quickly surveyed at coarser resolutions and areas of substantial change can be scanned at higher resolutions. This also translates into reduced processing time and data maintenance, which are currently significant hurdles for analyzing 3D laser scan datasets. Finally, this method provides immediate validation and quality control of the RTK GPS and laser scan data being collected, leading to more confidence in the acquired data and allowing any issues to be resolved directly in the field.
机译:诸如海岸侵蚀,山体滑坡,地震荷载等地质灾害不断威胁着公共高速公路的建设和维护。使用地面激光扫描(TLS,基于地面的LiDAR)进行重复调查,可以快速进行3D数据采集,以绘制,查看,分析和理解产生此类问题的过程。以前,扫描调查之间的变更检测和分析是在返回办公室后处理期间进行的,而不是在现场收集数据时进行的。现场的变化检测提高了现场调查的有效性和效率。我们开发了一种新算法,该算法可在野外采集时快速进行地理参考扫描,并通过将这些新采集的扫描结果与基线模型进行比较来同时执行更改检测。此算法已与简单,直观的GUI集成在一起,可快速完成更改检测(扫描),同时在现场采集数据。该软件也得到了增强,以确保高效的工作流程。该算法的实施和测试已在几个州机构遇到问题的地点进行。俄勒冈州的101号公路沿线有两个活动活跃的试验场。这些是斯宾塞溪大桥工地和约翰逊溪滑坡。另一个试验场是US20先锋-爱迪维尔高速公路改建项目,该项目中几次活跃的滑坡和路堤填土坡的表面坡破坏严重破坏了施工工作。在这些站点上收集了大量的基线信息,这将对俄勒冈州交通运输部和俄勒冈州地质与矿产工业部的未来研究非常有用。在现场执行变更检测为当前的后处理工作流程提供了多个重要优势。首先,现场变化检测可以用作增强现实系统,使现场工作人员和研究人员能够在现场看到即时结果,从而使他们能够在现场进行重要观察,而不必依赖于他们的个人记忆或笔记。其次,重要的是,它可以提高调查的整体效率。当在现场数据采集过程中操作员可以获取此信息时,可以以较粗的分辨率快速测量变化最小的区域,而可以以较高的分辨率扫描变化较大的区域。这也意味着减少了处理时间和数据维护,这是目前分析3D激光扫描数据集的重要障碍。最终,该方法可以对RTK GPS和所收集的激光扫描数据进行即时验证和质量控制,从而使人们对所采集的数据更有信心,并可以在现场直接解决任何问题。

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