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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Characterizing forest succession with lidar data: An evaluation for the Inland Northwest, USA
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Characterizing forest succession with lidar data: An evaluation for the Inland Northwest, USA

机译:利用激光雷达数据表征森林演替:对美国内陆西北部的评估

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摘要

Quantifying forest structure is important for sustainable forest management, as it relates to a wide variety of ecosystem processes and services. Lidar data have proven particularly useful for measuring or estimating a suite of forest structural attributes Such as canopy height. basal area, and LAI. However, the potential of this technology to characterize forest succession remains largely untested. The objective of this study was to evaluate the use of lidar data for characterizing forest successional stages across a structurally diverse. mixed-species forest in Northern Idaho. We used a variety of lidar-derived metrics in conjunction with an algorithmic modeling procedure (Random Forests) to classify six stages of three-dimensional forest development and achieved an overall accuracy>95%. The algorithmic model presented herein developed ecologically meaningful classifications based upon lidar metrics quantifying mean vegetation height and canopy cover, among others. This study highlights the utility of lidar data for accurately classifying forest succession in complex, mixed coniferous forests: but further research should be conducted to classify forest successional stages across different forests types. The techniques presented herein can be easily applied to other areas. Furthermore, the final classification map represents a significant advancement for forest succession modeling and wildlife habitat assessment.
机译:量化森林结构对于可持续森林管理非常重要,因为它涉及各种各样的生态系统过程和服务。事实证明,激光雷达数据对于测量或估算一系列森林结构属性(如树冠高度)特别有用。基底区域和LAI。但是,这项技术表征森林演替的潜力仍未经测试。这项研究的目的是评估激光雷达数据在表征结构多样的森林演替阶段中的应用。爱达荷州北部的混合物种森林。我们将各种基于激光雷达的指标与算法建模程序(Random Forests)结合使用,对三维森林发展的六个阶段进行了分类,总体准确率> 95%。本文提出的算法模型基于激光雷达指标开发了具有生态意义的分类,其中激光雷达指标量化了平均植被高度和树冠覆盖等。这项研究强调了激光雷达数据在准确分类复杂的针叶林中的森林演替中的作用:但是应该进行进一步的研究以对不同森林类型之间的森林演替阶段进行分类。本文提出的技术可以容易地应用于其他领域。此外,最终的分类图代表了森林演替建模和野生动植物栖息地评估的重大进展。

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