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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Remote sensing of vegetation 3-D structure for biodiversity and habitat: Review and implications for lidar and radar spaceborne missions
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Remote sensing of vegetation 3-D structure for biodiversity and habitat: Review and implications for lidar and radar spaceborne missions

机译:植被3-D结构对生物多样性和生境的遥感:对激光雷达和雷达星载飞行任务的回顾和意义

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摘要

Biodiversity and habitat face increasing pressures due to human and natural influences that alter vegetation structure. Because of the inherent difficulty of measuring forested vegetation three-dimensional (3-D) structure on the ground, this important component of biodiversity and habitat has been, until recently, largely restricted to local measurements, or at larger scales to generalizations. New lidar and radar remote sensing instruments such as those proposed for spaceborne missions will provide the capability to fill this gap. This paper reviews the state of the art for incorporatinginformation on vegetation 3-D structure into biodiversity and habitat science and management approaches, with emphasis on use of lidar and radar data. First we review relationships between vegetation 3-D structure, biodiversity and habitat, and metrics commonly used to describe those relationships. Next, we review the technical capabilities of new lidar and radar sensors and their application to biodiversity and habitat studies to date. We then define variables that have been identified as both useful and feasible to retrieve from spaceborne lidar and radar observations and provide their accuracy and precision requirements. We conclude with a brief discussion of implications for spaceborne missions and research programs. The possibility to derive vegetation 3-D measurements from spaceborne active sensors and to integrate them into science and management comes at a critical juncture for global biodiversity conservation and opens new possibilities for advanced scientific analysis of habitat and biodiversity.
机译:由于人类和自然因素改变了植被结构,生物多样性和栖息地面临着越来越大的压力。由于无法测量地面上的森林植被三维(3-D)结构存在固有的困难,因此直到最近,生物多样性和栖息地的这一重要组成部分仍主要限于局部测量,或者更大规模地推广。新的激光雷达和雷达遥感仪器,例如为太空飞行而提议的那些仪器,将能够填补这一空白。本文回顾了将植被3-D结构信息纳入生物多样性以及栖息地科学和管理方法的最新技术,重点是激光雷达和雷达数据的使用。首先,我们回顾一下植被3-D结构,生物多样性和栖息地之间的关系,以及通常用来描述这些关系的指标。接下来,我们将回顾新型激光雷达和雷达传感器的技术功能及其在生物多样性和栖息地研究中的应用。然后,我们定义已被识别出从星载激光雷达和雷达观测中检索出的有用且可行的变量,并提供其准确性和精度要求。最后,我们简要讨论了对太空飞行任务和研究计划的影响。从星载有源传感器获取植被3-D测量值并将其整合到科学和管理中的可能性,正处于全球生物多样性保护的关键时刻,并为对栖息地和生物多样性进行高级科学分析开辟了新的可能性。

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