...
首页> 外文期刊>Surveys in Geophysics: An International Review Journal of Geophysics and Planetary Sciences >Variability and Uncertainty Challenges in Scaling Imaging Spectroscopy Retrievals and Validations from Leaves Up to Vegetation Canopies
【24h】

Variability and Uncertainty Challenges in Scaling Imaging Spectroscopy Retrievals and Validations from Leaves Up to Vegetation Canopies

机译:缩放成像光谱检索和叶片验证到植被檐篷中的变异性和不确定性挑战

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Imaging spectroscopy of vegetation requires methods for scaling and generalizing optical signals that are reflected, transmitted and emitted in the solar wavelength domain from single leaves and observed at the level of canopies by proximal sensing, airborne and satellite spectroradiometers. The upscaling embedded in imaging spectroscopy retrievals and validations of plant biochemical and structural traits is challenged by natural variability and measurement uncertainties. Sources of the leaf-to-canopy upscaling variability and uncertainties are reviewed with respect to: (1) implementation of retrieval algorithms and (2) their parameterization and validation of quantitative products through in situ field measurements. The challenges are outlined and discussed for empirical and physical leaf and canopy radiative transfer modelling components, considering both forward and inverse modes. Discussion on optical remote sensing validation schemes includes also description of a multiscale validation concept and its advantages. Impacts of intraspecific and interspecific variability on collected field and laboratory measurements of leaf biochemical traits and optical properties are demonstrated for selected plant species, and field measurement uncertainty sources are listed and discussed specifically for foliar pigments and canopy leaf area index. The review concludes with the main findings and suggestions as how to reduce uncertainties and include variability in scaling vegetation imaging spectroscopy signals and functional traits of single leaves up to observations of whole canopies.
机译:植被的成像光谱需要用于从单个叶子的太阳波长域中透射,传输和发射的缩放和概括光学信号,并通过近端感测,空气传播和卫星光谱分布仪观察。嵌入成像光谱检索和植物生化和结构性状的验证的升高受到自然变异性和测量不确定性的挑战。关于:(1)通过原位现场测量审查了:(1)通过原位现场测量审查了:(1)通过原位现场测量审查了:(1)执行检索算法和(2)对定量产品的参数化和验证来审查叶子对顶篷升高的变异性和不确定性。考虑到前向和逆模式,对实证和物理叶和冠层辐射转移建模组件概述和讨论了挑战。关于光学遥感验证方案的讨论还包括多尺度验证概念及其优点的描述。为选定的植物物种证明了所选植物物种对叶生化性状和光学性质的收集现场和实验室测量的影响和实验室测量的影响,并列出了现场测量不确定性来源,并专门针对叶面颜料和冠层叶面积指数讨论。审查总结了主要的调查结果和建议,以及如何减少不确定性,包括缩放植被成像光谱信号的可变性,单人叶片的功能性状达到整个檐篷的观察。

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