首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Performance of Spectral Fitting Methods for vegetation fluorescence quantification
【24h】

Performance of Spectral Fitting Methods for vegetation fluorescence quantification

机译:光谱拟合方法在植被荧光定量分析中的性能

获取原文
获取原文并翻译 | 示例
       

摘要

The Fraunhofer Line Discriminator (FLD) principle has long been considered as the reference method to quantify solar-induced chlorophyll fluorescence (F) from passive remote sensing measurements. Recently, alternative retrieval algorithms based on the spectral fitting of hyperspectral radiance observations, Spectral Fitting Methods (SFMs), have been proposed. The aim of this manuscript is to investigate the performance of such algorithms and to provide relevant information regarding their use. FLD and SFMs were used to estimate F starting from Top Of Canopy (TOC) fluxes at very high spectral resolution (0.12 nm) and sampling interval (0.1 nm), exploiting the O-2-B (687.0 nm) and O-2-A (760.6 nm) atmospheric oxygen absorption bands overlapping the fluorescence emissions at the red and far-red spectral window. Specific parameters affecting FLD and SFM performances are investigated and the accuracy of F estimation of the two methods is compared. The problem related to the lack of independent measurements of Fat canopy level, which prevents the direct assessment of F estimation accuracy with actual measurements, is overcome in this study by using a modeled database of TOC reflectance spectra. In order to compute accuracy figures valid for operative applications the simulated spectra were perturbed by the addition of radiometric noise. An investigation was conducted to determine the best FLD channel configuration; it showed that violation of FLD assumptions results in a positive bias in F estimation at both oxygen absorption bands that cannot be avoided even at the high spectral resolution considered. SFMs were shown to be more accurate than FLD under any noise configuration considered.
机译:弗劳恩霍夫线鉴别器(FLD)原理长期以来被认为是从被动遥感测量中量化太阳诱导的叶绿素荧光(F)的参考方法。最近,已经提出了基于高光谱辐射观测的光谱拟合的替代检索算法,即光谱拟合方法(SFM)。本手稿的目的是研究此类算法的性能并提供有关其使用的相关信息。 FLD和SFM用于评估O-2-B(687.0 nm)和O-2-从非常高的光谱分辨率(0.12 nm)和采样间隔(0.1 nm)的冠层顶部通量(TOC)开始的F (760.6 nm)的大气氧吸收带与红色和远红色光谱窗口处的荧光发射重叠。研究了影响FLD和SFM性能的特定参数,并比较了两种方法的F估计精度。这项研究通过使用TOC反射光谱的模型数据库克服了与缺乏脂肪冠层水平的独立测量有关的问题,该问题阻止了用实际测量值直接评估F估计准确性。为了计算对于操作应用有效的精度数字,通过添加辐射噪声来干扰模拟光谱。进行了调查以确定最佳FLD通道配置;结果表明,违反FLD假设会导致两个氧吸收带的F估计值出现正偏差,即使在考虑的高光谱分辨率下也无法避免。在任何考虑的噪声配置下,SFM都比FLD更为精确。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号