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Large-scale parameterization of 3D building morphology in complex urban landscapes using aerial LiDAR and city administrative data

机译:使用空中LiDAR和城市管理数据对复杂城市景观中的3D建筑形态进行大规模参数化

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The form and function of the modern city are defined by the three-dimensional contours of the built environment. The morphology of the urban landscape has significant implications for a city's sustainability, efficiency, and resilience. With advancements in remote sensing, especially airborne Light Detection and Ranging (LiDAR), the potential exists to model urban topography at an unprecedented spatial resolution and granularity and extract previously unavailable characteristics of individual buildings. In this study, we demonstrate the application of point-based voxelization techniques to extract design parameters in complex urban environments at unprecedented scale using New York City, and its more than 1,000,000 buildings, as a test case. Covering approximately 800 km(2), we develop a 1 m(2) resolution Digital Surface Model (DSM) derived from aerial LiDAR point cloud data, together with city administrative records, to calculate building massing, height, volume, exposed surface area, and compactness ratios for every building in the City. The proposed scalable approach creates a significant opportunity for city administrators, urban planners, architectural engineers, and building designers to understand the relationship between urban morphology and a range of infrastructure and environmental systems.
机译:现代城市的形式和功能由建筑环境的三维轮廓定义。城市景观的形态对城市的可持续性,效率和韧性具有重要意义。随着遥感技术的进步,尤其是机载光检测和测距(LiDAR),存在以空前的空间分辨率和粒度对城市地形进行建模并提取以前无法获得的单个建筑物特征的潜力。在这项研究中,我们演示了基于点的体素化技术的应用,以纽约市及其超过1,000,000座建筑为例,以前所未有的规模在复杂的城市环境中提取设计参数。我们覆盖约800 km(2),开发了一个1 m(2)分辨率的数字地面模型(DSM),该数字地面模型是根据空中LiDAR点云数据以及城市管理记录得出的,以计算建筑物的质量,高度,体积,暴露的表面积,和城市中每栋建筑物的紧凑度比率。提议的可扩展方法为城市管理员,城市规划人员,建筑工程师和建筑设计师提供了一个重要的机会,以了解城市形态与一系列基础设施和环境系统之间的关系。

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