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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Measuring gap fraction, element clumping index and LAI in Sierra Forest stands using a full-waveform ground-based lidar
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Measuring gap fraction, element clumping index and LAI in Sierra Forest stands using a full-waveform ground-based lidar

机译:使用全波形地面激光雷达测量塞拉森林林分中的空隙率,元素聚集指数和LAI

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摘要

The Echidna Validation Instrument (EVI), a ground-based, near-infrared (1064nm) scanning lidar, provides gap fraction measurements, element clumping index measurements, effective leaf area index (LAI_e) and leaf area index (LAI) measurements that are statistically similar to those from hemispherical photos. In this research, a new method integrating the range dimension is presented for retrieving element clumping index using a unique series of images of gap probability (Pgap) with range from EVI. From these images, we identified connected gap components and found the approximate physical, rather than angular, size of connected gap component. We conducted trials at 30 plots within six conifer stands of varying height and stocking densities in the Sierra National Forest, CA, in August 2008. The element clumping index measurements retrieved from EVI Pgap image series for the hinge angle region are highly consistent (R~2=0.866) with those of hemispherical photos. Furthermore, the information contained in connected gap component size profiles does account for the difference between our method and gap-size distribution theory based method, suggesting a new perspective to measure element clumping index with EVI Pgap image series and also a potential advantage of three dimensional Lidar data for element clumping index retrieval. Therefore further exploration is required for better characterization of clumped condition from EVI Pgap image series.
机译:Echidna验证仪器(EVI)是一种基于地面的近红外(1064nm)扫描激光雷达,可提供间隙分数测量,元素聚集指数测量,有效叶面积指数(LAI_e)和叶面积指数(LAI)测量与半球形照片相似。在这项研究中,提出了一种结合范围维的新方法,该方法使用一系列具有EVI范围的间隙概率(Pgap)图像来检索元素聚集指数。从这些图像中,我们确定了相连的间隙分量,并找到了相连的间隙分量的近似物理尺寸,而不是角度尺寸。我们于2008年8月在加利福尼亚塞拉利昂国家森林的6个不同高度和放养密度的针叶林林分中的30个样地上进行了试验。从EVI Pgap图像系列中获取的铰链角度区域的元素聚集指数测量值高度一致(R〜 2 = 0.866)与半球照片的照片匹配。此外,连接的间隙组件尺寸轮廓中包含的信息确实说明了我们的方法与基于间隙尺寸分布理论的方法之间的差异,这为使用EVI Pgap图像序列测量元素聚集指数提供了新的视角,同时也显示了三维的潜在优势用于元素聚集索引检索的激光雷达数据。因此,需要进一步探索以从EVI Pgap图像序列更好地表征结块情况。

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