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Accuracy of Structure from Motion models in comparison with terrestrial laser scanner for the analysis of DBH and height influence on error behaviour

机译:运动模型与地面激光扫描仪相比的结构精度,可分析DBH和高度对错误行为的影响

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With the advantage of Structure from Motion technique, we reconstructed three-dimensional structures from two-dimensional image sequences in a circular plot with a radius of 6 m. The main objective of this research was to clarify the potential of using a low cost hand-held camera for evaluation of the stem accuracy reconstruction, through the comparison of data from two different point clouds. The first cloud comprises data collected with a digital camera that are compared with those collected by direct measurement of the FARO~R Focus3D S120 laser scanner. Photos were taken in a circular plot of pine trees using the stop-and-go method. We estimated the Euclidean distance for corresponding points for both clouds and we found out that most of the points with error less than 11 cm are concentrated mainly on the ground. Regression analysis showed a significant relationship between height above ground and error, the error is more pronounced for points located higher on the stems. As expected, no dependence was found between the error of the points and the diameter at breast height of their respective stems.
机译:利用“运动结构”技术的优势,我们从二维图像序列中以半径为6 m的圆形图重建了三维结构。这项研究的主要目的是通过比较两个不同点云的数据,阐明使用低成本手持相机评估茎准确度重建的潜力。第一朵云包括用数码相机收集的数据,并将其与通过直接测量FARO〜R Focus3D S120激光扫描仪收集的数据进行比较。使用停走走走法在松树的圆形图中拍摄照片。我们估算了两朵云对应点的欧几里得距离,发现误差小于11 cm的大多数点主要集中在地面上。回归分析显示,地上高度与误差之间存在显着关系,对于茎上较高的点,误差更为明显。如预期的那样,在点的误差和它们各自的茎的胸部高度处的直径之间没有发现依赖性。

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