首页> 外文期刊>Italian Journal of Agronomy >Limits and Potentialities of Studying Dryland Vegetation Using the Optical Remote Sensing
【24h】

Limits and Potentialities of Studying Dryland Vegetation Using the Optical Remote Sensing

机译:利用光学遥感研究旱地植被的局限性和潜力

获取原文
       

摘要

In optical remote sensing studies, the reflectance of the vegetation canopy in arid and semiarid areas is affected by the optical properties of the vegetation elements, their arrangement in the vegetation canopy and the optical properties of the surrounding environment. The study of vegetation and surrounding environment parameters presents significant peculiarities in arid areas. Low vegetation cover leads to a small contribution of vegetation reflectance in the total pixel reflectance relative to the other materials. Most types of dry ecosystem shrubs do not differ enough from one another to allow discernment of vegetation type. Vegetation in arid and semiarid areas adapts its structure and phenology to the harsh environment, which affects the overall brightness and temporal and spatial interspecies spectral variability. Moreover, the surrounding environment in dry ecosystem influences the reflectance of the vegetation by multiple scattering and nonlinear mixing and variable spectral composition of soil surface. Many remote sensing techniques are insensitive to nonphotosynthetic vegetation, which can be a major component of total cover in dry ecosystem areas. Spectral mixture analysis (SMA) appears to be the most promising technique to obtain information on vegetation cover, soil surface type and vegetation canopy characteristics. The empirical signature libraries of the world’s dominant vegetation types could be upgraded for use with SMA.
机译:在光学遥感研究中,干旱和半干旱地区植被冠层的反射率受植被元素的光学特性,它们在植被冠层中的排列以及周围环境的光学特性的影响。对植被和周围环境参数的研究在干旱地区表现出明显的特点。相对于其他材料,较低的植被覆盖率导致植被反射率在总像素反射率中的贡献很小。大多数类型的干旱生态系统灌木彼此之间的差异不足以区分植被类型。干旱和半干旱地区的植被使其结构和物候适应恶劣的环境,这会影响总体亮度以及时空种间光谱的可变性。此外,干旱生态系统中的周围环境通过多次散射和非线性混合以及土壤表面可变光谱成分影响植被的反射率。许多遥感技术对非光合作用植被不敏感,这可能是干旱生态系统地区总覆盖的主要组成部分。光谱混合分析(SMA)似乎是获得有关植被覆盖率,土壤表面类型和植被冠层特征信息的最有前途的技术。可以升级世界主要植被类型的经验性特征库,以便与SMA配合使用。

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