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[森林土壤多角度高光谱偏振反射效应]

[Effects of multi-angle hyperspectral polarized reflection by forest soil].

作者信息

Han Yang, Zhao Yun-Sheng, Zhao Nai-Zhuo, Li Qian, Lü Yun-Feng

机构信息

College of Urban and Environmental Sciences, Northeast Normal University, Changchun 130024, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2009 Mar;29(3):701-6.

Abstract

In the present study, the authors measured samples of typical forest soils in different states with multi-angle hyperspectral polarized reflections. The authors analyzed multi-angle hyperspectral polarized reflections of soil data with various viewing zenith angles, incidence angles, relative azimuth angles, polarized states, soil water content and soil granule. The authors found that those factors affected the reflectance values of forest soils but not the spectral feature. The conclusions included that the larger the incidence angles and viewing zenith angles are, the bigger the polarized reflectance values of the surface of the forest soil. When the forest soil was dry, the surface had phenomenon of diffuse reflection and the polarized light reflection did not take place. When the soil moisture content reached a certain level, the polarized reflection appeared. The more the moisture content of the forest soil was, the smaller the polarized reflectance of the surface. The bigger the soil granule was and the rougher the soil surface was, the smaller the surface polarized reflectance. The results and conclusions suggested that the spectral characteristics of the ground target need to be considered adequately in order to design the best mode for sensor systems by remote sensing technology. The authors suggest that the incidence angle and viewing zenith angle be selected on the basis of factual instance. The authors suggest using larger viewing zenith angles and that the incidence angle should be equal to the viewing zenith angle. In the meantime, the effects of sheltering by ground targets need to be considered and the proper state of polarization should be chosen while keeping relative zenith angle at 180 degrees. This study not only helps find a new way for detection of soil characters, but also provides a theoretical basis for further research on multi-angle hyperspectral polarized reflection for detecting characteristic spectrum and best states in measuring forest soil.

摘要

在本研究中,作者利用多角度高光谱偏振反射对不同状态下的典型森林土壤样本进行了测量。作者分析了土壤数据在不同观测天顶角、入射角、相对方位角、偏振状态、土壤含水量和土壤颗粒情况下的多角度高光谱偏振反射。作者发现,这些因素会影响森林土壤的反射率值,但不影响光谱特征。研究结论包括:入射角和观测天顶角越大,森林土壤表面的偏振反射率值越大。当森林土壤干燥时,表面存在漫反射现象,不存在偏振光反射。当土壤含水量达到一定水平时,偏振反射出现。森林土壤含水量越高,表面的偏振反射率越小。土壤颗粒越大,土壤表面越粗糙,表面偏振反射率越小。研究结果和结论表明,为了通过遥感技术设计传感器系统的最佳模式,需要充分考虑地面目标的光谱特征。作者建议根据实际情况选择入射角和观测天顶角。作者建议使用较大的观测天顶角,且入射角应等于观测天顶角。同时,需要考虑地面目标的遮蔽影响,在保持相对天顶角为180度的同时选择合适的偏振状态。本研究不仅有助于找到检测土壤特性的新方法,还为进一步研究用于检测森林土壤特征光谱和最佳状态的多角度高光谱偏振反射提供了理论依据。

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