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canopy vertical structure
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     This article introduces the basic principle of lidar remote sensing and the lidar systems of large footprint and small footprint. The status of the technology, the retrieval methods of forest parameters such as tree height, biomass, canopy vertical structure and crown closure, and the prospect of the application of lidar technology in forestry have been reviewed in detail in this paper.
     介绍激光雷达遥感的基本原理、大光斑和小光斑激光雷达系统的特点,对它们在林业上的应用现状进行评述,重点分析激光雷达反演森林参数的方法,对激光雷达的林业应用前景进行分析和展望。
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     The vertical structure of the community is complex;
     群落垂直结构复杂 ,草本层发育 ;
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     On ITS Structure
     论ITS的结构体系
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     The structure of P.C.
     大跨度预应力混凝土斜拉桥(简称P.C.斜拉桥)结构不仅经济、美观,而且可以采用悬臂浇筑方法施工、使这一桥型得以迅速推广。
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     THE VERTICAL STRUCTURE OF ATMOSPHERE AND ITS TELECONNECTION
     大气的垂直结构与遥相关型
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     Dynamic Simulation of Rice Canopy Structure
     水稻冠层结构的动态模拟研究
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  canopy vertical structure
Thebetween-species variation within a growth-form was a highlysignificant predictor of canopy vertical structure in the 27 communities.
      
Measurements derived from the lidar waveforms were used to characterize the canopy vertical structure.
      


Lidar (light detection and ranging) remote sensing is a breakthrough of active remote sensing technology in recent years. It has shown enormous potential for forest parameters retrieval. Lidar remote sensing has the unique advantage of providing horizontal and vertical information at high accuracies. Especially it can be used to measure forest height directly with unprecedented accuracy. This article introduces the basic principle of lidar remote sensing and the lidar systems of large footprint and small footprint....

Lidar (light detection and ranging) remote sensing is a breakthrough of active remote sensing technology in recent years. It has shown enormous potential for forest parameters retrieval. Lidar remote sensing has the unique advantage of providing horizontal and vertical information at high accuracies. Especially it can be used to measure forest height directly with unprecedented accuracy. This article introduces the basic principle of lidar remote sensing and the lidar systems of large footprint and small footprint. The status of the technology, the retrieval methods of forest parameters such as tree height, biomass, canopy vertical structure and crown closure, and the prospect of the application of lidar technology in forestry have been reviewed in detail in this paper.

激光雷达是近年来国际上发展十分迅速的主动遥感技术,在森林参数的定量测量和反演上取得了成功的应用。激光雷达具有与被动光学遥感不同的成像机理,对植被空间结构和地形的探测能力很强,特别是对森林高度的探测能力,具有其他遥感数据无法比拟的优势。介绍激光雷达遥感的基本原理、大光斑和小光斑激光雷达系统的特点,对它们在林业上的应用现状进行评述,重点分析激光雷达反演森林参数的方法,对激光雷达的林业应用前景进行分析和展望。

 
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