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首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Building detection and building parameter retrieval in InSAR phase images
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Building detection and building parameter retrieval in InSAR phase images

机译:InSAR相位图像中的建筑物检测和建筑物参数检索

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The high resolution provided by the current satellite SAR missions makes them an attractive solution for the detailed analysis of urban areas. Especially due to their weather and daylight independency, they can be employed when optical sensors come to their limits. Due to the specific oblique side-looking configuration of such SAR sensors, phenomena such as layover, double bounce and shadow appear at building location, which can be better understood with very high resolution (VHR) SAR data. The detection of those areas, as well as the retrieval of building parameters through a detailed analysis of the extracted structures, is a challenging task. Indeed, depending on the acquisition configuration, on building material and surroundings, those patterns are not always consistent in amplitude SAR images. They can be difficult to recognize and distinguish automatically. Considering InSAR phase images instead of amplitude images is very helpful for this task, as InSAR is more depending on the geometry. Therefore, in this paper, we focus on the detection and extraction of building layover in InSAR phase images. Two complementing detectors are proposed, and their results are combined, in order to provide reliable building hypotheses. Based on the extracted segments, further analysis is conducted. Especially, the number of connected facades is analyzed. Characteristically geometrical shapes are finally fitted for each facade to permit the determination of the final building parameters as length, width, and height. Results of this approach are shown for three different datasets, first in terms of correctness and completeness of the extraction, and second in terms of accuracy of the extracted building parameters. For the considered datasets, the completeness and correctness are of about 70% and 90%, respectively. Eliminating clear outliers, the determined parameters present an accuracy up to 4 m (length), 2 m (height) and 3 degrees(orientation). In this article isolated, middle to high rise buildings with flat roof and rectangular shape are considered. (C) 2016 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:当前的卫星搜救任务提供的高分辨率使其成为对城市区域进行详细分析的有吸引力的解决方案。特别是由于它们的天气和日光独立性,它们可以在光学传感器达到其极限时使用。由于此类SAR传感器具有特殊的倾斜侧面构造,因此在建筑物的位置会出现诸如停顿,双重反弹和阴影之类的现象,使用超高分辨率(VHR)SAR数据可以更好地理解这种现象。这些区域的检测以及通过对提取的结构的详细分析来检索建筑参数是一项艰巨的任务。实际上,根据采集配置,建筑材料和环境,这些模式在振幅SAR图像中并不总是一致的。它们可能难以自动识别和区分。考虑到InSAR相位图像而不是振幅图像对于此任务非常有帮助,因为InSAR更取决于几何形状。因此,在本文中,我们着重于InSAR相位图像中建筑物停靠的检测和提取。提出了两个互补探测器,并将其结果进行组合,以提供可靠的构建假设。基于提取的片段,进行进一步分析。特别是,分析了连接立面的数量。最终,为每个立面安装了具有特征性的几何形状,以便确定最终的建筑参数,如长度,宽度和高度。针对三个不同的数据集显示了该方法的结果,首先是关于提取的正确性和完整性,其次是关于提取的建筑参数的准确性。对于所考虑的数据集,完整性和正确性分别约为70%和90%。消除了明显的异常值,确定的参数显示的精度最高为4 m(长度),2 m(高度)和3度(方向)。在本文中,考虑了具有平坦屋顶和矩形形状的隔离中高层建筑。 (C)2016国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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