首页> 外文会议>Asian conference on remote sensing;ACRS >AN ENHANCED APPROACH FOR DETECTION OF BOULDERS ON NATURAL HILLSIDES USING IMAGE PROCESSING AND LIDAR TECHNOLOGIES
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AN ENHANCED APPROACH FOR DETECTION OF BOULDERS ON NATURAL HILLSIDES USING IMAGE PROCESSING AND LIDAR TECHNOLOGIES

机译:利用图像处理和激光技术检测自然山丘上巨石的一种增强方法

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Boulders sitting on natural hillsides can pose a hazard to life and facilities downslope if they become unstable. To accurately assess boulder fall hazards of any hillside, it is important to map the locations and distribution of these boulders. Without such information, stability analysis and appropriate mitigation measures cannot be carried out. However, some of these boulders are scattered on steep natural hillsides and often covered by thick vegetation. Comprehensive field mapping of these boulders is time-consuming and labour-intensive, sometimes incomplete and may expose field personnel to an unsafe working environment. To overcome these constraints and reduce the amount of field mapping, remote sensing technology is considered a useful and effective alternative for boulder mapping. The Hong Kong Polytechnic University (HKPolyU) and the Geotechnical Engineering Office (GEO), Civil Engineering and Development Department of the Government of the Hong Kong Special Administrative Region have previously attempted to employ image processing to map boulders on natural hillsides and achieved a satisfactory level of accuracy. To enhance the previous approach, so as to increase the reliability and accuracy in boulder identification, a study adopting both image processing and airborne LiDAR technologies has recently been completed. In this study, the data from image processing and airborne LiDAR were extracted and processed using tailor-made algorithms to generate boulder polygons with their corresponding attributes such as dimensions, location and slope gradient. The results of this study indicate that this enhanced approach has significantly improved the reliability and accuracy of boulder identification. As only little fieldwork is required in this approach, it can avoid undesirable vegetation clearance required for provision of field access and reduce the risk to field personnel working on steep natural hillsides. This paper outlines the principles, assumptions, and details of the workflow for the enhanced approach for boulder detection on natural hillsides.
机译:如果巨石变得不稳定,坐在天然山坡上的巨石可能会对生命和设施的下坡造成危害。为了准确评估任何山坡上的巨石坠落危险,重要的是绘制这些巨石的位置和分布图。没有这些信息,就无法进行稳定性分析和适当的缓解措施。但是,其中一些巨石散布在陡峭的自然山坡上,通常被茂密的植被所覆盖。这些巨石的全面现场制图既费时又费力,有时不完整,可能使现场人员处于不安全的工作环境中。为了克服这些限制并减少现场测绘的数量,遥感技术被认为是巨石测绘的一种有用且有效的替代方法。香港理工大学(HKPolyU)和香港特别行政区政府土木工程开发局(GEO),香港特别行政区政府土力工程处(GEO)此前曾尝试利用图像处理技术在自然山坡上绘制巨石图,并取得了令人满意的水平准确性。为了增强以前的方法,以提高巨石识别的可靠性和准确性,最近完成了同时采用图像处理和机载LiDAR技术的研究。在这项研究中,使用定制算法提取并处理了来自图像处理和机载LiDAR的数据,以生成具有相应属性(例如尺寸,位置和坡度梯度)的巨石多边形。这项研究的结果表明,这种增强的方法大大提高了巨石识别的可靠性和准确性。由于这种方法只需要很少的野外工作,因此可以避免提供野外进入所需的不希望的植被清除,并减少了在陡峭的自然山坡上工作的野外人员的风险。本文概述了用于自然山坡上巨石检测的增强方法的原理,假设和工作流程的详细信息。

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