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首页> 外文期刊>Remote Sensing in Ecology and Conservation >Observing ecosystems with lightweight, rapid?¢????scanning terrestrial lidar scanners
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Observing ecosystems with lightweight, rapid?¢????scanning terrestrial lidar scanners

机译:用轻巧,快速的生态系统观测生态系统扫描陆地激光雷达扫描仪

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摘要

A new wave of terrestrial lidar scanners, optimized for rapid scanning and portability, such as the Compact Biomass Lidar (CBL), enable and improve observations of structure across a range of important ecosystems. We performed studies with the CBL in temperate and tropical forests, caves, salt marshes and coastal areas subject to erosion. By facilitating additional scanning points, and therefore view angles, this new class of terrestrial lidar alters observation coverage within samples, potentially reducing uncertainty in estimates of ecosystem properties. The CBL has proved competent at reconstructing trees and mangrove roots using the same cylinder?¢????based Quantitative Structure Models commonly utilized for data from more capable instruments (Raumonen et????al. 2013). For tropical trees with morphologies that challenge standard reconstruction techniques, such as the buttressed roots of Ceiba trees and the multiple stems of strangler figs, the CBL was able to provide the versatility and the speed of deployment needed to fully characterize their unique features. For geomorphological features, the deployment flexibility of the CBL enabled sampling from optimal view?¢????angles, including from a novel suspension system for sampling salt marsh creeks. Overall, the practical aspects of these instruments, which improve deployment logistics, and therefore data acquisition rate, are shown to be emerging capabilities, greatly increasing the potential for observation, particularly in highly temporally dynamic, inaccessible and geometrically complex ecosystems. In order to better analyze information quality across these diverse and challenging ecosystems, we also provide a novel and much?¢????needed conceptual framework, the microstate model, to characterize and mitigate uncertainties in terrestrial lidar observations.
机译:诸如紧凑型生物量激光雷达(CBL)等针对快速扫描和便携性进行了优化的新一波地面激光雷达扫描仪,使人们能够并改善对一系列重要生态系统结构的观测。我们在温带和热带森林,洞穴,盐沼和易受侵蚀的沿海地区与CBL进行了研究。通过促进附加的扫描点和视角,这种新型的地面激光雷达可以改变样本内的观测范围,从而有可能减少生态系统特性估计的不确定性。事实证明,CBL能够胜任使用相同圆柱体的定量结构模型来重建树木和红树林根部的功能,该模型通常用于从功能更强的仪器获取数据(Raumonen等,2013)。对于形态挑战标准重建技术的热带树木,例如木棉树的根部支撑和无花果树的多个茎干,CBL能够提供充分发挥其独特功能所需的多功能性和部署速度。对于地貌特征,CBL的部署灵活性允许从最佳视角进行采样,包括从用于盐沼小溪采样的新型悬挂系统采样。总体而言,这些仪器的实用方面已显示出新出现的功能,它们可以改善部署后勤工作,从而提高数据获取率,极大地增加了观察的潜力,尤其是在高度时间动态,不可访问和几何复杂的生态系统中。为了更好地分析这些多样化和具有挑战性的生态系统中的信息质量,我们还提供了一个新颖且急需的概念框架,即微状态模型,以表征和减轻陆地激光雷达观测的不确定性。

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