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Analysis of the reliability of the double bounce scattering mechanism for detecting buildings in VHR SAR images

机译:VHR SAR图像中双反弹散射机制检测建筑物的可靠性分析

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The double bounce effect of buildings is an important characteristic in very high resolution (VHR) synthetic aperture radar (SAR) images. It typically appears as a strong scattering mechanism caused by a corner reflector, which is made of the front wall of a building and its surrounding ground area. In order to exploit this feature effectively for automatic building detection and reconstruction techniques, empirical studies on real VHR SAR images need to investigate the stability of the double bounce mechanism with respect to changes in the viewing configuration and material properties. Thus, this paper addresses the analysis of the relation between the double bounce effect and the aspect angle of a building for two different ground materials, by analyzing two TerraSAR-X VHR spaceborne SAR images. Furthermore, we compare the empirical results with the simulations obtained by theoretical electromagnetic models. We show that if the buildings are surrounded by asphalt, the strength of the double bounce decreases significantly from 0 to 10 degrees aspect angle, while it decreases moderately for higher values of the aspect angle. Considering buildings which are surrounded by grass, the drop of the strength for low values of the aspect angle is less evident, but it is more constant on the full range of aspect angles.
机译:建筑物的双重反弹效应是超高分辨率(VHR)合成孔径雷达(SAR)图像的重要特征。它通常表现为由角反射器引起的强散射机制,该角反射器由建筑物的前壁及其周围的地面区域组成。为了有效地利用此功能进行自动建筑物检测和重建技术,对真实VHR SAR图像的经验研究需要研究双反射机制相对于观看配置和材料特性变化的稳定性。因此,本文通过分析两个TerraSAR-X VHR星载SAR图像,分析了双反射效应与建筑物的纵横比之间的关系。此外,我们将实验结果与通过理论电磁模型获得的仿真结果进行比较。我们显示,如果建筑物被沥青包围,则双反弹的强度会从0到10度的纵横角显着降低,而对于较高的纵横角,强度会适度降低。考虑到周围都是草皮的建筑物,对于低纵横比值,强度的下降不太明显,但是在整个纵横比范围内,它的强度更恒定。

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