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OBLIQUE AERIAL PHOTOGRAPHY TOOL FOR BUILDING INSPECTION AND DAMAGE ASSESSMENT

机译:倾斜的空中摄影工具,用于构建检查和损伤评估

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Aerial photography has a long history of being employed for mapping purposes due to some of its main advantages, including large area imaging from above and minimization of field work. Since few years multi-camera aerial systems are becoming a practical sensor technology across a growing geospatial market, as complementary to the traditional vertical views. Multi-camera aerial systems capture not only the conventional nadir views, but also tilted images at the same time. In this paper, a particular use of such imagery in the field of building inspection as well as disaster assessment is addressed. The main idea is to inspect a building from four cardinal directions by using monoplotting functionalities. The developed application allows to measure building height and distances and to digitize man-made structures, creating 3D surfaces and building models. The realized GUI is capable of identifying a building from several oblique points of views, as well as calculates the approximate height of buildings, ground distances and basic vectorization. The geometric accuracy of the results remains a function of several parameters, namely image resolution, quality of available parameters (DEM, calibration and orientation values), user expertise and measuring capability.
机译:由于其主要优点的一些主要优点,空中摄影具有悠久的历史,包括从上面的一些主要的面积成像和最小化现场工作。由于几年来,多相机的空中系统正在成为一个不断增长的地理空间市场的实用传感器技术,与传统的垂直视图互补。多摄像机空中系统不仅捕获传统的Nadir视图,还捕获了同时倾斜图像。在本文中,解决了在建筑检查领域和灾害评估中的这种图像的特定使用。主要思想是通过使用单位函数来检查来自四个基本方向的建筑物。开发的应用程序允许衡量建筑物高度和距离,并向人造结构进行数字化,创建3D表面和建筑模型。实现的GUI能够从几个斜视点识别建筑物,并计算建筑物的大致高度,地面距离和基本矢量化。结果的几何精度仍然是几个参数的函数,即图像分辨率,可用参数质量(DEM,校准和方向值),用户专业知识和测量能力。

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