首页> 外文期刊>Journal of Computing in Civil Engineering >UAS Point Cloud Accuracy Assessment Using Structure from Motion-Based Photogrammetry and PPK Georeferencing Technique for Building Surveying Applications
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UAS Point Cloud Accuracy Assessment Using Structure from Motion-Based Photogrammetry and PPK Georeferencing Technique for Building Surveying Applications

机译:UAS点云精度评估使用基于运动的摄影测量和PPK地理转移技术的构建测量应用

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摘要

Construction researchers and professionals have shown increased interest and need to enhance the accuracy of unmanned aerial system (UAS)-generated point cloud data (PCD) and ideally improve this technology's integration within construction practices. High-accuracy PCD are required for a variety of construction practices, including building surveying applications. This study aims to investigate the effect of single- and dual-frequency types of global navigation satellite systems (GNSSs) together with postprocessing kinematic (PPK) technique on the accuracy of the UAS-generated PCD in a building surveying application. The paper first discusses the customization of an open-source UAS platform equipped with a dual-frequency GNSS that is capable of georeferencing captured data using PPK technology. Then a comparative PCD accuracy assessment is conducted through a building surveying experiment with three UAS configurations and conditions: (1) UAS with dual-frequency GNSS and PPK, (2) UAS with dual-frequency GNSS without PPK, and (3) UAS with single-frequency GNSS without PPK. Ground sampling distance (GSD) and camera angle parameters were also considered in the experimental assessment to better understand their effects on the generated PCD accuracies. The outcomes of this experiment led to the development of a PCD accuracy matrix that illustrates the effect of those UAS technical configurations and flight parameters on the level of PCD accuracy.
机译:建筑研究人员和专业人士表现出增加的兴趣,需要提高无人机系统(UAS)的准确性(UAS) - 根云数据(PCD),理想地改善了该技术在建设实践中的一体化。各种建筑实践需要高精度PCD,包括建筑测量应用。本研究旨在调查单频和双频类型的全球导航卫星系统(GNSSS)的影响,以及后处理运动学(PPK)技术在建筑测量应用中的UAS生成的PCD精度上。本文首先讨论了配备有双频率GNS的开源UAS平台的定制,该双频GNSS能够使用PPK技术地地地地地地捕获数据。然后通过建筑测量实验进行比较PCD精度评估,其中包括三种UAS配置和条件:(1)UAS,带有双频GNSS和PPK,(2)UA,具有不具有PPK的双频GNSS,以及(3)UAS没有PPK的单频GNSS。在实验评估中也考虑了地面采样距离(GSD)和相机角参数,以更好地了解它们对产生的PCD精度的影响。该实验的结果导致了PCD精度矩阵的开发,说明了这些UAS技术配置和飞行参数对PCD精度水平的影响。

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