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Estimating Tree Position, Diameter at Breast Height, and Tree Height in Real-Time Using a Mobile Phone with RGB-D SLAM

机译:使用带有RGB-D SLAM的手机估算树立位置,乳房高度,乳房高度和树高的树高

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摘要

Accurate estimation of tree position, diameter at breast height (DBH), and tree height measurements is an important task in forest inventory. Mobile Laser Scanning (MLS) is an important solution. However, the poor global navigation satellite system (GNSS) coverage under the canopy makes the MLS system unable to provide globally-consistent point cloud data, and thus, it cannot accurately estimate the forest attributes. SLAM could be an alternative for solutions dependent on GNSS. In this paper, a mobile phone with RGB-D SLAM was used to estimate tree position, DBH, and tree height in real-time. The main aims of this paper include (1) designing an algorithm to estimate the DBH and position of the tree using the point cloud from the time-of-flight (TOF) camera and camera pose; (2) designing an algorithm to measure tree height using the perspective projection principle of a camera and the camera pose; and (3) showing the measurement results to the observer using augmented reality (AR) technology to allow the observer to intuitively judge the accuracy of the measurement results and re-estimate the measurement results if needed. The device was tested in nine square plots with 12 m sides. The tree position estimations were unbiased and had a root mean square error (RMSE) of 0.12 m in both the x-axis and y-axis directions; the DBH estimations had a 0.33 cm (1.78%) BIAS and a 1.26 cm (6.39%) root mean square error (RMSE); the tree height estimations had a 0.15 m (1.08%) BIAS and a 1.11 m (7.43%) RMSE. The results showed that the mobile phone with RGB-D SLAM is a potential tool for obtaining accurate measurements of tree position, DBH, and tree height.
机译:精确估计树立位置,乳房高度(DBH)的直径,树高度测量是森林库存中的重要任务。移动激光扫描(MLS)是一个重要的解决方案。然而,差距下的全球导航卫星系统(GNSS)覆盖范围使得MLS系统无法提供全球 - 一致的点云数据,因此,它无法准确估计林业属性。 SLAM可能是依赖于GNSS的解决方案的替代方案。在本文中,使用具有RGB-D SLAM的移动电话来实时估计树位置,DBH和树高。本文的主要目的包括(1)设计一种算法来估计树的DBH和使用飞行时间(TOF)相机和摄像机姿势的点云的DBH和位置; (2)使用相机和相机姿势的透视投影原理设计算法来测量树高; (3)使用增强现实(AR)技术向观察者展示测量结果,以允许观察者直观地判断测量结果的准确性并在需要时重新估计测量结果。该器件在九个方形图中用12米侧进行测试。树立位置估计是无偏的,并且在x轴和y轴方向上具有0.12μm的根均方误差(Rmse); DBH估计具有0.33厘米(1.78%)偏置,1.26厘米(6.39%)根均方误差(RMSE);树高度估计有0.15米(1.08%)偏差,1.11米(7.43%)RMSE。结果表明,具有RGB-D SLAM的移动电话是用于获得精确测量树位置,DBH和树高的潜在工具。

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