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首页> 外文期刊>International journal of image and data fusion >Modelling and monitoring urban built environment via multi-source integrated and fused remote sensing data
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Modelling and monitoring urban built environment via multi-source integrated and fused remote sensing data

机译:通过多源集成和融合的遥感数据对城市建筑环境进行建模和监控

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摘要

Investigation of urban built environment includes a wide range of applications that require 3-D information. New approaches are needed for near-real-time analysis of the urban environment with natural 3-D visualisation of extensive coverage. Hyperspectral remote sensing technology is a promising and powerful tool to assess quantitative classification of urban materials by exploring possible chemical/physical changes using spectral information across the VIS-NIR-SWIR spectral region. Light Detection And Ranging (LiDAR) technology offers precise information about the geometrical properties of the surfaces and can reflect the different shapes and formations in the complex urban environment. Generating a monitoring system that is based on integrative fusion of hyperspectral and LiDAR data may enlarge the application envelope of each individual technology and contribute valuable information on urban built environments and planning. A fusion process defined by a data-registration algorithm and including spectral/ spatial and 3-D information is developed and presented. The proposed practical 3-D urban environment application for photogrammetric and urban planning purposes integrates the hyperspectral (spectrometer, ground camera and airborne sensor) and LiDAR data. This application may provide urban planners, civil engineers and decision-makers with tools to consider quantitative spectral information in the 3-D urban space.
机译:对城市建筑环境的调查包括需要3D信息的广泛应用。需要采用自然覆盖范围广泛的自然3-D可视化对城市环境进行近实时分析的新方法。高光谱遥感技术是一种有前途且功能强大的工具,可通过使用VIS-NIR-SWIR光谱区域内的光谱信息探索可能的化学/物理变化来评估城市材料的定量分类。激光探测与测距(LiDAR)技术可提供有关表面几何特性的精确信息,并可反映复杂城市环境中的不同形状和构造。生成基于高光谱和LiDAR数据融合融合的监视系统,可能会扩大每种技术的应用范围,并为城市建成环境和规划提供有价值的信息。开发并提出了一种由数据注册算法定义的融合过程,其中包括光谱/空间和3-D信息。提议的用于摄影测量和城市规划目的的实际3D城市环境应用程序将高光谱(光谱仪,地面摄像机和机载传感器)和LiDAR数据集成在一起。该应用程序可以为城市规划人员,土木工程师和决策者提供考虑3D城市空间中定量光谱信息的工具。

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