首页> 外文期刊>Environmental earth sciences >Object-oriented change detection and damage assessment using high-resolution remote sensing images, Tangjiao Landslide, Three Gorges Reservoir, China
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Object-oriented change detection and damage assessment using high-resolution remote sensing images, Tangjiao Landslide, Three Gorges Reservoir, China

机译:利用三峡水库唐郊滑坡的高分辨率遥感影像进行面向对象的变化检测与破坏评估

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This paper presents a new approach for tracking land cover changes and assessing damages caused by individual reservoir landslides using high-resolution images. The object-oriented change detection (OOCD) approach has recently become more popular than traditional pixel-oriented methods for high-resolution image analysis. However, few studies have applied the OOCD approach to the land cover change detection (LCCD) and the damage assessments of individual landslide. An OOCD approach was applied to the multi-temporal high-resolution images taken in 2002, 2005, 2010 and 2013 throughout the Tangjiao Landslide in the TGRA. The proposed OOCD approach contains three major steps: land-cover-type analysis, high-resolution image classification using an object-oriented classification method and LCCD via comparing the classified geographic objects in different temporal images. The object-oriented classification results show that the overall classification accuracies of the 2005, 2010 and 2013 images were greater than 92%, with Kappa Index of Agreement values of at least 89%. The IKONOS image taken in 2002 is an exception to both of these values. Land cover change maps suggest that various damages occurred throughout the study area from 2002 to 2013. Large woodland areas were submerged at the front of the study area. In addition, 21,365 m(2) buildings and a 300-m-long road were damaged between 2005 and 2010. Furthermore, a large surface crack was observed from 2010 to 2013. The results suggest that the OOCD approach is able to effectively and accurately identify damage characteristics on the individual landslide. The results also show that the instability of Tangjiao Landslide is controlled by the geological conditions and seriously affected by the reservoir water-level fluctuation and seasonal rainfall.
机译:本文提出了一种新方法,用于跟踪土地覆盖变化并使用高分辨率图像评估单个水库滑坡造成的破坏。面向对象的变化检测(OOCD)方法近来比用于高分辨率图像分析的传统的面向像素的方法更受欢迎。但是,很少有研究将OOCD方法应用于土地覆被变化检测(LCCD)和单个滑坡的破坏评估。在2002年,2005年,2010年和2013年在TGRA的整个唐郊滑坡上拍摄的多时相高分辨率图像都采用了OOCD方法。拟议的OOCD方法包括三个主要步骤:土地覆盖类型分析,使用面向对象分类方法的高分辨率图像分类和通过比较不同时间图像中的分类地理对象的LCCD。面向对象的分类结果表明,2005年,2010年和2013年图像的总体分类准确率大于92%,并且协议的Kappa指数值至少为89%。 2002年拍摄的IKONOS图像是这两个值的例外。土地覆盖变化图表明,从2002年到2013年,整个研究区域发生了各种破坏。大片林地被淹没在研究区域的前面。此外,2005年至2010年间,有21,365 m(2)建筑物和300米长的道路遭到破坏。此外,从2010年至2013年,观察到大的表面裂缝。结果表明,OOCD方法能够有效且准确地进行确定单个滑坡的破坏特征。研究结果还表明,唐郊滑坡的失稳受地质条件控制,并受到水库水位波动和季节性降雨的严重影响。

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