首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >APPLICATION OF OFF-NADIR SATELLITE IMAGERY IN EARTHQUAKE DAMAGE ASSESSMENT USING OBJECT-BASED HOG FEATURE DESCRIPTOR
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APPLICATION OF OFF-NADIR SATELLITE IMAGERY IN EARTHQUAKE DAMAGE ASSESSMENT USING OBJECT-BASED HOG FEATURE DESCRIPTOR

机译:基于对象的Hog特征描述符在地震损伤评估中的脱离Nadir卫星图像的应用

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One of the most crutial applications of very-high-resolution (VHR) satellite images is disaster management. In disaster management, time is of great importance. Therefore, it is vital to acquire satellite images as quickly as possible and benefit from automatic change detection to speed up the process. Automatic damage map generation is performed by overlaying the co-registered before and after images of the area of interest and, compring them to highlight the affected infrastructures. For speeding up image capture, satellites tilt their imaging sensor and take images from oblique angles. However, this kind of image acquisition causes severe geometric distortion in the images, which hinders image co-registration in automatic change detection. In this study, a Patch-Wise Co-Registration (PWCR) solution is used. In this algorithm, the before and after images are co-registered in a segment-by-segment manner. From the literature, this algorithm is followed by a spectral comparison to detect changes. However, due to the complicated structure of debris in damage detection applications, spectral comparison methods cannot perform well. In this work, we developed an object-based method using Histogram of Oriented Gradient descriptor to detect damges and compared our results to different existing spectral and textural change detection methods. The algorithm is tested on images from the 2010-Heidi earthquake, captured by DigitalGlobe. The achieved highly accurate results demonstrate the potential of using off-nadir remote sensing images for automatic urban damage detection possibly in early response systems as it speeds up the damage map generation by providing flexibility to utilize images taken from different anlges.
机译:非常高分辨率(VHR)卫星图像的最富有的应用之一是灾害管理。在灾害管理中,时间非常重要。因此,尽可能快地获取卫星图像并从自动变化检测中获益以加速过程。通过在感兴趣区域的图像之前和之后覆盖共同登记的自动损伤地图生成,并构成它们以突出影响受影响的基础设施。为了加速图像捕获,卫星倾斜其成像传感器并从倾斜角度拍摄图像。然而,这种图像采集导致图像中严重的几何失真,其阻碍了在自动变化检测中的图像共同登记。在该研究中,使用斑块明智的共登记(PWCR)溶液。在该算法中,图像之前和之后的图像以逐段方式共同登记。从文献中,该算法之后是频谱比较来检测变化。但是,由于损坏检测应用中的碎屑的复杂结构,光谱比较方法不能很好地表现。在这项工作中,我们开发了一种基于对象的方法,该方法使用面向梯度描述符的直方图来检测震动并将我们的结果与不同现有的谱和纹理变化检测方法进行比较。该算法在2010-Heidi地震的图像上进行了测试,由DigitalGlobe捕获。实现高度准确的结果表明,在早期响应系统中可能在早期响应系统中使用偏离NADIR遥感图像的可能性,因为它通过提供灵活性来利用来自不同截图所拍摄的图像来加速损坏地图生成。

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