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Semi-automated landslide inventory mapping from bitemporal aerial photographs using change detection and level set method

机译:使用变化检测和水平集方法从双时空航拍图绘制半自动滑坡清单

摘要

Landslide inventory mapping (LIM) is an increasingly important research topic in remote sensing and natural hazards. Past studies achieve LIM mainly using on-screen interpretation of aerial photos, and little attention has been paid to developing more automated methods. In recent years, the use of multitemporal remote sensing images makes it possible to map landslides semi-automatically. Although numerous methods have been proposed, only a few methods are competent for some specific situations and there is large room for improvement in their degree of automation. For these reasons, a semi-automated approach is proposed for reliable and accurate LIM from bitemporal aerial orthophotos. Specifically, it consists of two principal steps: 1) change detection-based thresholding (CDT) and 2) level set evolution (LSE). CDT is mainly used to generate the initial zero-level curve (ZLC) for LSE, thus automating the proposed method considerably. It includes three substeps: 1) generating difference image (DI) using change vector analysis (CVA), 2) detecting landslide candidates using a thresholding method, and 3) removing errors using morphology operations. Then, landslide boundaries are detected using two types of LSE, i.e., edge-based LSE (ELSE) and region-based LSE (RLSE). Finally, the effectiveness and advantages of the proposed methods are corroborated by a series of experiments. Given its efficiency and accuracy, it can be applied to rapid responses of natural hazards. This study is the first attempt to apply LSE to LIM from bitemporal remote sensing images.
机译:滑坡清单测绘(LIM)是遥感和自然灾害中日益重要的研究主题。过去的研究主要通过对航空照片的屏幕解释来实现LIM,并且很少关注开发更多的自动化方法。近年来,多时相遥感影像的使用使半自动绘制滑坡成为可能。尽管已经提出了许多方法,但是只有几种方法适用于某些特定情况,并且自动化程度还有很大的提高空间。由于这些原因,提出了一种半自动方法,用于从时空航空正射影像中获得可靠且准确的LIM。具体来说,它包括两个主要步骤:1)基于更改检测的阈值(CDT)和2)水平集演进(LSE)。 CDT主要用于为LSE生成初始零电平曲线(ZLC),从而使所提出的方法相当自动化。它包括三个子步骤:1)使用变化矢量分析(CVA)生成差异图像(DI),2)使用阈值方法检测滑坡候选对象,以及3)使用形态学操作消除误差。然后,使用两种类型的LSE来检测滑坡边界,即基于边缘的LSE(ELSE)和基于区域的LSE(RLSE)。最后,通过一系列实验证实了所提方法的有效性和优势。鉴于其效率和准确性,它可以应用于自然灾害的快速响应。这项研究是将LSE应用于双时相遥感影像的LIM的首次尝试。

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