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利用多波束激光探测和测距测量构建的运动来理解树木的动态特性。

Understanding the dynamic properties of trees using the motions constructed from multi-beam flash light detection and ranging measurements.

机构信息

Department of Civil and Environmental Engineering, the Hong Kong University of Science and Technology, Kowloon, Hong Kong.

出版信息

J R Soc Interface. 2022 Aug;19(193):20220319. doi: 10.1098/rsif.2022.0319. Epub 2022 Aug 3.

Abstract

Measuring the three-dimensional motion of trees at every position remains challenging as it requires dynamic measurement technology with sufficient spatial and temporal resolution. Consequently, this study explores the use of a novel multi-beam flash light detection and ranging (LiDAR) sensor to tackle such a sensing barrier. A framework is proposed to record tree vibrations, to construct the motions of tree skeletons from the point-cloud frames recorded by the LiDAR sensor and to derive the dynamic properties of trees. The feasibility of the framework is justified through measurement on a under pull-and-release tests. The relative differences for the first two modal frequencies between the LiDAR and linear variable differential transformer measurements in the displacement Fourier spectra are 0.1% and 2.5%, respectively. The framework is further adopted to study the dynamic response of different trees subjected to typhoons, including a , three trees, , a , a and a . Results suggest that broadleaved trees might exhibit vibration in a wide frequency band, whereas the coniferous trees could follow a distinct dominant frequency.

摘要

测量树木在每个位置的三维运动仍然具有挑战性,因为它需要具有足够空间和时间分辨率的动态测量技术。因此,本研究探索了使用新型多光束闪光激光检测和测距(LiDAR)传感器来解决这种传感障碍。提出了一个框架来记录树木的振动,从 LiDAR 传感器记录的点云帧中构建树木骨架的运动,并得出树木的动态特性。该框架的可行性通过在拉拔释放测试下对一棵进行的测量得到了验证。在位移傅里叶谱中,LiDAR 和线性可变差动变压器测量的前两个模态频率的相对差异分别为 0.1%和 2.5%。该框架还被用于研究不同树木在台风作用下的动态响应,包括一棵、三棵、一棵、一棵、一棵和一棵。结果表明,阔叶树可能在较宽的频带内表现出振动,而针叶树可能遵循明显的主导频率。

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