首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >COMPARISON OF UAVS PERFORMANCE FOR A ROMAN AMPHITHEATRE SURVEY: THE CASE OF AVELLA (ITALY)
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COMPARISON OF UAVS PERFORMANCE FOR A ROMAN AMPHITHEATRE SURVEY: THE CASE OF AVELLA (ITALY)

机译:罗马眼镜蛇调查的UAVS性能比较:以阿维拉(意大利)为例

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In the field of archaeological surveying, remote sensors and especially photogrammetric and laser scanner systems are widely used to create 3D models. The use of photogrammetric surveying with UAVs (Unmanned Aerial Vehicles), combined with Computer Vision algorithms, allows the building of three-dimensional models, characterized by photo-realistic textures. The choice of which method to use mainly depends on the complexity of the investigated site, the accuracy requirements and the available budget and time. The different components of the UAV system determine its characteristics in terms of performance and accuracy, therefore define its quality and the cost too. This study presents an assessment of the accuracy of point clouds derived by two UAV systems, a commercial quadcopter (DJI Phantom 3 Professional), a professional assembled hexacopter, and by a TLS (Terrestrial Laser Scanner) in order to compare photogrammetric and laser scanner data for archaeological applications. In this paper, we present a case study to compare and analyse the metric accuracy of the point clouds and the distribution of the GCPs (Ground Control Points). This accuracy assessment will serve to quantify the uncertainty in the absolute position of the GCPs, identified on the panoramic images in the absence of artificial targets. Executed experiments showed that in tested UAVs, the choice of the GCPs has significant impact on point cloud accuracy. Estimated absolute accuracy of point clouds collected during both test flights was better than 5?cm.
机译:在考古测量领域,远程传感器,尤其是摄影测量和激光扫描仪系统被广泛用于创建3D模型。通过结合UAV(无人飞行器)进行摄影测量,结合计算机视觉算法,可以构建具有真实感纹理特征的三维模型。使用哪种方法的选择主要取决于所调查站点的复杂性,准确性要求以及可用的预算和时间。无人机系统的不同组件决定了其性能和准确性方面的特征,因此也定义了其质量和成本。这项研究提出了对两个无人机系统,商用四轴飞行器(DJI Phantom 3 Professional),专业组装六轴飞行器和TLS(地面激光扫描仪)得出的点云精度的评估,以便比较摄影测量和激光扫描仪数据用于考古应用。在本文中,我们将提供一个案例研究,以比较和分析点云的度量精度以及GCP(地面控制点)的分布。该准确性评估将用于量化在没有人工目标的情况下在全景图像上识别出的GCP绝对位置的不确定性。进行的实验表明,在经过测试的无人机中,GCP的选择对点云精度有重大影响。在两次测试飞行中,收集到的点云的绝对绝对精度均优于5?cm。

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