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Fusion of hyperspectral images and LiDAR data for civil engineering structure monitoring

机译:高光谱图像和LiDAR数据的融合,用于土木工程结构监测

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Investigation of civil engineering materials includes a wide range of applications that requires three-dimensional (3D) information. Complex structures shapes and formations within heterogeneous artificialatural land covers under varying environmental conditions requires knowledge on the 3D status of the urban materials for better (visual) interpretation of polluted sources. Obtaining 3D information and merge them with aerial photography is not a trivial task. It is thus, strongly needed to develop new approaches for near real time analysis of the urban environment with natural 3D visualization of extensive coverage. The hyperspectral remote sensing (HRS) technology is a promising and powerful tool to assess degradation of urban materials in artificial structures by exploring possible chemical physical changes using spectral information across the VIS-NIR-SWIR spectral region (400–2500nm). This technique provides the ability for easy, rapid and accurate in situ assessment of many materials on a spatial domain within near real time condition and high temporal resolution. LiDAR technology, on the other hand, offers precise information about the geometrical properties of the surfaces within the study areas and can reflect different shapes and formations of the complex urban environment. Generating a monitoring system that is based on the integrative fusion between HRS and LiDAR data may enlarge the application envelop of each technology separately and contribute valuable information on urban runoff and planning. The aim of the presented research is to implement this direction and define set of rules for practical integration between the two datasets. A fusion process defined by integrative decision tree analysis includes spectral/spatial and 3D information is developed and presented.
机译:土木工程材料的研究包括需要三维(3D)信息的广泛应用。在不同的环境条件下,异质人工/天然土地覆盖物中复杂的结构形状和形成需要了解城市材料的3D状态,以便更好地(视觉)解释污染源。获得3D信息并将其与航拍图像融合并不是一件容易的事。因此,迫切需要开发具有广泛覆盖范围的自然3D可视化的近距离实时分析城市环境的新方法。高光谱遥感(HRS)技术是一种有前途且功能强大的工具,可通过使用VIS-NIR-SWIR光谱区域(400-2500nm)范围内的光谱信息探索可能的化学物理变化来评估人造结构中城市材料的降解。该技术提供了在近实时条件和高时间分辨率下轻松,快速和准确地在空间域上对许多材料进行原位评估的能力。另一方面,LiDAR技术可提供有关研究区域内表面的几何特性的精确信息,并可反映复杂城市环境的不同形状和形成。生成基于HRS和LiDAR数据之间融合融合的监控系统可能会分别扩大每种技术的应用范围,并为城市径流和规划提供有价值的信息。提出的研究的目的是实现这个方向并为两个数据集之间的实际集成定义一套规则。通过综合决策树分析定义的融合过程包括光谱/空间和3D信息的开发和展示。

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