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An approach to reduce mapping errors in the production of landslide inventory maps

机译:减少滑坡清单图制作中的地图绘制误差的方法

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摘要

Landslide inventory maps (LIMs) show where landslides have occurred in an area, and provide information useful to different types of landslide studies, including susceptibility and hazard modelling and validation, risk assessment, erosion analyses, and to evaluate relationships between landslides and geological settings. Despite recent technological advancements, visual interpretation of aerial photographs (API) remains the most common method to prepare LIMs. In this work, we present a new semi-automatic procedure that makes use of GIS technology for the digitization of landslide data obtained through API. To test the procedure, and to compare it to a consolidated landslide mapping method, we prepared two LIMs starting from the same set of landslide API data, which were digitized (a) manually adopting a consolidated visual transfer method, and (b) adopting our new semi-automatic procedure. Results indicate that the new semi-automatic procedure (a) increases the interpreter's overall efficiency by a factor of 2, (b) reduces significantly the subjectivity introduced by the visual (manual) transfer of the landslide information to the digital database, resulting in more accurate LIMs. With the new procedure, the landslide positional error decreases with increasing landslide size, following a power-law. We expect that our work will help adopt standards for transferring landslide information from the aerial photographs to a digital landslide map, contributing to the production of accurate landslide maps.
机译:滑坡清单图(LIM)显示了某个地区发生滑坡的位置,并提供了对不同类型的滑坡研究有用的信息,包括敏感性和危害建模与验证,风险评估,侵蚀分析以及评估滑坡与地质环境之间的关系。尽管有最新的技术进步,但航空影像(API)的视觉解释仍然是准备LIM的最常用方法。在这项工作中,我们提出了一种新的半自动程序,该程序利用GIS技术对通过API获得的滑坡数据进行了数字化处理。为了测试该程序并将其与合并的滑坡映射方法进行比较,我们从同一组滑坡API数据开始准备了两个LIM,并对其进行了数字化(a)手动采用合并的可视化传输方法,以及(b)采用新的半自动程序。结果表明,新的半自动程序(a)将口译员的整体效率提高了2倍,(b)大大降低了将滑坡信息通过视觉(手动)传递到数字数据库所带来的主观性,从而带来了更多准确的LIM。采用新程序,滑坡位置误差会随着幂律而随滑坡尺寸的增加而减小。我们希望我们的工作将有助于采用将航空影像中的滑坡信息传输到数字滑坡图的标准,从而有助于生成准确的滑坡图。

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