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Modelisation de l'architecture des forets pour ameliorer la teledetection des attributs forestiers.

机译:森林体系结构建模,以改善对森林属性的遥感。

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摘要

The quality of indirect measurements of canopy structure, from in situ and satellite remote sensing, is based on knowledge of vegetation canopy architecture. Technological advances in ground-based, airborne or satellite remote sensing can now significantly improve the effectiveness of measurement programs on forest resources. The structure of vegetation canopy describes the position, orientation, size and shape of elements of the canopy. The complexity of the canopy in forest environments greatly limits our ability to characterize forest structural attributes. Architectural models have been developed to help the interpretation of canopy structural measurements by remote sensing. Recently, the terrestrial LiDAR systems, or TLiDAR (Terrestrial Light Detection and Ranging), are used to gather information on the structure of individual trees or forest stands. The TLiDAR allows the extraction of 3D structural information under the canopy at the centimetre scale. The methodology proposed in my Ph.D. thesis is a strategy to overcome the weakness in the structural sampling of vegetation cover. The main objective of the Ph.D. is to develop an architectural model of vegetation canopy, called L-Architect (LiDAR data to vegetation Architecture), and to focus on the ability to document forest sites and to get information on canopy structure from remote sensing tools. Specifically, L-Architect reconstructs the architecture of individual conifer trees from TLiDAR data. Quantitative evaluation of L-Architect consisted to investigate (i) the structural consistency of the reconstructed trees and (ii) the radiative coherence by the inclusion of reconstructed trees in a 3D radiative transfer model. Then, a methodology was developed to quasi-automatically reconstruct the structure of individual trees from an optimization algorithm using TLiDAR data and allometric relationships. L-Architect thus provides an explicit link between the range measurements of TLiDAR and structural attributes of individual trees. L-Architect has finally been applied to model the architecture of forest canopy for better characterization of vertical and horizontal structure with airborne LiDAR data. This project provides a mean to answer requests of detailed canopy architectural data, difficult to obtain, to reproduce a variety of forest covers. Because of the importance of architectural models, L-Architect provides a significant contribution for improving the capacity of parameters' inversion in vegetation cover for optical and lidar remote sensing.;Mots-cles: modelisation architecturale, lidar terrestre, couvert forestier, parametres structuraux, teledetection.
机译:从原位和卫星遥感间接测量冠层结构的质量基于植被冠层结构的知识。地面,机载或卫星遥感的技术进步现在可以大大提高森林资源测量计划的有效性。植被冠层的结构描述了冠层元素的位置,方向,大小和形状。森林环境中树冠的复杂性极大地限制了我们表征森林结构特征的能力。已经开发出建筑模型以帮助通过遥感解释冠层结构测量。最近,地面LiDAR系统或TLiDAR(地面光检测和测距)被用于收集有关单个树木或林分结构的信息。 TLiDAR允许以厘米为单位提取冠层下的3D结构信息。在我的博士学位中提出的方法。论文是一种克服植被覆盖结构抽样中的薄弱环节的策略。博士学位的主要目标正在开发一种称为L-Architect(LiDAR数据到植被建筑)的植被冠层建筑模型,并着重于记录森林地点的能力以及从遥感工具中获取有关冠层结构的信息的能力。具体来说,L-Architect从TLiDAR数据重建了单个针叶树的架构。 L-建筑师的定量评估包括研究(i)重建树木的结构一致性和(ii)通过将重建树木包含在3D辐射传递模型中来进行辐射相干性。然后,开发了一种使用TLiDAR数据和异形关系从优化算法准自动重建单个树的结构的方法。因此,L-Architect提供了TLiDAR范围测量与单个树木的结构属性之间的明确链接。 L-Architect最终被应用于对林冠结构进行建模,以利用机载LiDAR数据更好地表征垂直和水平结构。该项目提供了一种手段,可以回答难以获得的详细冠层建筑数据的请求,从而再现各种森林覆盖物。由于建筑模型的重要性,L-Architect为提高植被覆盖参数的光学和激光雷达遥感参数反演能力做出了重要贡献。主题:建筑建模,激光雷达地形,库弗森林人,结构参数,遥测。

著录项

  • 作者

    Cote, Jean-Francois.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Environmental Sciences.;Computer Science.;Remote Sensing.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 218 p.
  • 总页数 218
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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