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Measuring Tree Height with Remote Sensing—A Comparison of Photogrammetric and LiDAR Data with Different Field Measurements

机译:利用遥感测量树高—不同现场测量的摄影测量和LiDAR数据的比较

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We contribute to a better understanding of different remote sensing techniques for tree height estimation by comparing several techniques to both direct and indirect field measurements. From these comparisons, factors influencing the accuracy of reliable tree height measurements were identified. Different remote sensing methods were applied on the same test site, varying the factors sensor type, platform, and flight parameters. We implemented light detection and ranging (LiDAR) and photogrammetric aerial images received from unmanned aerial vehicles (UAV), gyrocopter, and aircraft. Field measurements were carried out indirectly using a Vertex clinometer and directly after felling using a tape measure on tree trunks. Indirect measurements resulted in an RMSE of 1.02 m and tend to underestimate tree height with a systematic error of ?0.66 m. For the derivation of tree height, the results varied from an RMSE of 0.36 m for UAV-LiDAR data to 2.89 m for photogrammetric data acquired by an aircraft. Measurements derived from LiDAR data resulted in higher tree heights, while measurements from photogrammetric data tended to be lower than field measurements. When absolute orientation was appropriate, measurements from UAV-Camera were as reliable as those from UAV-LiDAR. With low flight altitudes, small camera lens angles, and an accurate orientation, higher accuracies for the estimation of individual tree heights could be achieved. The study showed that remote sensing measurements of tree height can be more accurate than traditional triangulation techniques if the aforementioned conditions are fulfilled.
机译:通过将几种技术与直接和间接野外测量相比较,我们有助于更好地理解用于树高估计的不同遥感技术。从这些比较中,可以确定影响可靠树高测量精度的因素。在相同的测试地点使用了不同的遥感方法,从而改变了传感器类型,平台和飞行参数的因素。我们实施了从无人飞行器(UAV),旋翼机和飞机接收的光检测和测距(LiDAR)以及摄影测量的航空图像。现场测量是使用Vertex斜度仪间接进行的,并且在砍伐之后直接使用卷尺在树干上进行的。间接测量得出的RMSE为1.02 m,并且往往低估了树的高度,系统误差为0.66 m。对于树高的推导,结果从无人机获取的LiDAR数据的RMSE为0.36 m到飞机获取的摄影测量数据的2.89 m不等。从LiDAR数据得出的测量结果导致树高更高,而从摄影测量数据获得的测量结果往往低于野外测量。当绝对方向合适时,UAV-Camera的测量结果与UAV-LiDAR的测量结果一样可靠。在较低的飞行高度,较小的摄像机镜头角度和准确的方向的情况下,可以实现更高的估计单个树高的精度。研究表明,如果满足上述条件,对树高的遥感测量将比传统的三角测量技术更准确。

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