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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >COMBINATION OF TERRESTRIAL LASERSCANNING, UAV AND CLOSE-RANGE PHOTOGRAMMETRY FOR 3D RECONSTRUCTION OF COMPLEX CHURCHES IN GEORGIA
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COMBINATION OF TERRESTRIAL LASERSCANNING, UAV AND CLOSE-RANGE PHOTOGRAMMETRY FOR 3D RECONSTRUCTION OF COMPLEX CHURCHES IN GEORGIA

机译:陆地激光扫描,无人机和近距离照相术相结合,实现乔治亚州复杂教堂的3D重建

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In September 2018, photogrammetric images and terrestrial laser scans were carried out as part of a measurement campaign for the three-dimensional recording of several historic churches in Tbilisi (Georgia). The aim was the complete spatial reconstruction with a spatial resolution and accuracy of approx. 1cm under partly difficult external conditions, which required the use of different measurement techniques.The local measurement data were collected by two laser scanning campaigns (Leica BLK360 and Faro Focus 3D X330), two UAV flights and two terrestrial image sets. The photogrammetric point clouds were calculated with the SfM programs AgiSoft PhotoScan and RealityCapture taking into account the control points from the Faro laser scan. The mean residual errors from the registrations or photogrammetric evaluations are 4-12mm, depending on the selected software. The best completeness and quality of the resulting 3D model was achieved by using laserscan data and images simultaneously.
机译:2018年9月,作为测量活动的一部分,进行了摄影测量图像和地面激光扫描,以三维记录在第比利斯(乔治亚州)的几座历史悠久的教堂。目的是完成完整的空间重构,其空间分辨率和精度约为。在部分困难的外部条件下需要1厘米的距离,这需要使用不同的测量技术。本地测量数据是通过两次激光扫描(Leica BLK360和Faro Focus 3D X330),两次无人机飞行和两个地面图像集收集的。使用SfM程序AgiSoft PhotoScan和RealityCapture计算摄影测量点云,同时考虑到Faro激光扫描的控制点。根据所选软件的不同,配准或摄影测量评估得出的平均残留误差为4-12mm。通过同时使用laserscan数据和图像,可以实现最终3D模型的最佳完整性和质量。

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