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UAV-based canopy textures assess changes in forest structure from long-term degradation

机译:基于UAV的冠层纹理评估了长期退化的森林结构的变化

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摘要

Degraded tropical forests dominate agricultural frontiers and their management is becoming an urgent priority. This calls for a better understanding of the different forest cover states and cost-efficient techniques to quantify the impact of degradation on forest structure. Canopy texture analyses based on Very High Spatial Resolution (VHSR) optical imagery provide proxies to assess forest structures but the mechanisms linking them with degradation have rarely been investigated. To address this gap, we used a lightweight Unmanned Aerial Vehicle (UAV) to map 739 ha of degraded forests and acquire both canopy VHSR images and height model. Thirty-three years of degradation history from Landsat archives allowed us to sample 40 plots in undisturbed, logged, over-logged and burned and regrowth forests in tropical forested landscapes (Paragominas, Para, Brazil). Fourier (FOTO) and lacunarity textures were used to assess forest canopy structure and to build a typology linking degradation history and current states. Texture metrics capture canopy grain, heterogeneity and openness gradients and correlate with forest structure variability (R2 = 0.58). Similar structures share common degradation history and can be discriminated on the basis of canopy texture alone (accuracy = 55%). Over-logging causes a lowering in forest height, which brings homogeneous textures and of finer grain. We identified the major changes in structures due to fire following logging which changes heterogeneous and intermediate grain into coarse textures. Our findings highlight the potential of canopy texture metrics to characterize degraded forests and thus be used as indicators for forest management and degradation mitigation. Inexpensive and agile UAV open promising perspectives at the interface between field inventory and satellite characterization of forest structure using texture metrics.
机译:降级的热带森林占主导地位的农业领域,他们的管理层正在成为一种紧迫的优先事项。这要求更好地了解不同的森林覆盖状态和具有成本效益的技术,以量化降解对森林结构的影响。基于非常高空间分辨率(VHSR)光学图像的冠层纹理分析提供了评估森林结构的代理,但是很少研究将它们与降解进行降解的机制。为了解决这一差距,我们使用了轻量级无人驾驶飞行器(UAV)来映射739公顷的退化森林,并获得冠层VHSR图像和高度模型。 Landsat档案馆的三十三年的退化历史使我们能够在热带森林景观(Paragominas,巴西)的热带森林景观(ParaGominas)的不受干扰,记录,过度记录和烧伤和再生森林中来确定40个地块。傅立叶(Foto)和曲线性纹理用于评估森林冠层结构,并建立一个链接劣化历史和当前状态的类型。纹理度量捕获冠层谷物,异质性和开放梯度,与森林结构变异性相关(R2 = 0.58)。类似的结构共享常见的降级历史,并且可以仅基于天篷纹理(精度= 55%)歧视。过度测井导致森林高度降低,这带来了均匀的纹理和更精细的谷物。在测井之后,我们确定了由于火灾而导致的结构的主要变化,这将异质和中间晶粒变为粗糙纹理。我们的调查结果突出了冠层纹理指标的潜力,以表征退化的森林,因此被用作森林管理指标和降解缓解。廉价且敏捷的无人机在使用纹理指标使用森林结构的界面清单与卫星表征之间的界面中的开放式观点。

著录项

  • 来源
    《Ecological indicators》 |2020年第8期|106386.1-106386.11|共11页
  • 作者单位

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France|Int Ctr Trop Agr CIAT Hanoi Vietnam;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France|Trop Agr Res & Higher Educ Ctr CATIE Forests Biodivers & Climate Change Program Ecosyst Modelling Unity Turrialba Cartago Costa Rica;

    IRD AMAP UMR Montpellier France;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France;

    Univ Rennes 2 CNRS LETG 6554 UMR Lab Geog & Remote Sensing COSTEL Rennes France;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France;

    Int Ctr Trop Agr CIAT Hanoi Vietnam|EMBRAPA Amazonia Oriental BR-66095903 Belem Para Brazil;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France;

    Int Ctr Trop Agr CIAT Hanoi Vietnam;

    CIRAD Forets & Soc F-34398 Montpellier France|Univ Montpellier CIRAD Forets & Soc Montpellier France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Canopy structure; Forest degradation; Remote sensing; Texture; Tropical forest; Unmanned aerial vehicle;

    机译:树冠结构;森林退化;遥感;纹理;热带森林;无人驾驶飞行器;

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