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Terrestrial laser scanning in geology: data acquisition, processing and accuracy considerations

机译:地质中的地面激光扫描:数据采集,处理和精度考虑

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摘要

Terrestrial laser scanning, or lidar, is a recent innovation in spatial information data acquisition, which allows geological outcrops to be digitally captured with unprecedented resolution and accuracy. With point precisions and spacing of the order of a few centimetres, an enhanced quantitative element can now be added to geological fieldwork and analysis, opening up new lines of investigation at a variety of scales in all areas of field-based geology. Integration with metric imagery allows 31) photorealistic models to be created for interpretation, visualization and education. However, gaining meaningful results from lidar scans requires more than simply acquiring raw point data. Surveys require planning and, typically, a large amount of post-processing time. The contribution of this paper is to provide a more detailed insight into the technology, data collection and utilization techniques than is currently available. The paper focuses on the workflow for using lidar data, from the choice of field area and survey planning, to acquiring and processing data and, finally, extracting geologically useful data. Because manufacturer specifications for point precision are often optimistic when applied to real-world outcrops, the error sources associated with lidar data, and the implications of them propagating through the processing chain, are also discussed.
机译:地面激光扫描或激光雷达是空间信息数据采集中的一项最新创新,它可以以前所未有的分辨率和精度数字化捕获地质露头。凭借点精度和几厘米量级的间距,现在可以将增强的定量元素添加到地质野外作业和分析中,从而在基于野外地质学的所有领域中以各种规模开辟了新的研究领域。与公制图像的集成允许创建31)真实感模型,用于解释,可视化和教育。但是,从激光雷达扫描获得有意义的结果不仅需要简单地获取原始点数据,还需要更多。调查需要计划,并且通常需要大量的后处理时间。本文的作用是提供比现有技术更详细的技术,数据收集和利用技术见解。本文重点介绍了使用激光雷达数据的工作流程,从现场区域的选择和勘测计划到采集和处理数据,最后提取对地质有用的数据。由于将点精度的制造商规范应用于实际露头时通常较为乐观,因此还讨论了与激光雷达数据相关的误差源,以及它们在整个处理链中传播的含义。

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