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Detection and feature extraction of bridges in airborne and spaceborne SAR image data

机译:空机和星载SAR图像数据桥梁的检测和特征提取

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摘要

Operational SAR satellite systems such as ENVISAT-ASAR and RADARSAT-1 deliver image data of a rather coarse resolution, which allows the recognition or feature extraction only for large man-made objects. State of the art airborne SAR sensors on the other hand provide spatial resolution in the order well below a half meter. In such data many features of urban objects can be identified and used for recognition. Core elements of man-made infrastructure are bridges. In case of bridges over water, the oblique side looking imaging geometry of SAR sensors may lead to special signature in a SAR image depending on the aspect. In this paper, the appearance of bridges over water in SAR data is discussed. Geometric constraints concerning the changing of this signature are investigated using simulation techniques based on an adapted ray tracing. Furthermore, an approach is presented to detect bridges over water and to derive object features from spaceborne and airborne SAR images in the context of disaster management. RADARSAT-1 data with a spatial resolution of about 9 m as well as high-resolution airborne SAR data of geometric sampling distance better than 40 cm are investigated.
机译:诸如Envisat-ASAR和RADARSAT-1等操作SAR卫星系统提供相当粗糙分辨率的图像数据,这允许仅针对大型人造物体的识别或特征提取。另一方面,艺术技术空气传播的机载SAR传感器在低于半米以下的顺序提供空间分辨率。在这种数据中,可以识别和用于识别城市对象的许多特征。人造基础设施的核心要素是桥梁。在水上桥的情况下,SAR传感器的成像几何形状的倾斜侧可能导致SAR图像中的特殊签名,具体取决于该方面。在本文中,讨论了SAR数据中水的桥梁的外观。关于改变该签名改变的几何约束,使用基于适应的光线跟踪来研究仿真技术。此外,提出一种方法以检测水上的桥梁,并在灾害管理的背景下从星载和空气传播的SAR图像中衍生出物体特征。研究了大约9米的空间分辨率的Radarsat-1数据以及高度高于40cm的几何采样距离的高分辨率空气传播SAR数据。

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