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DOI10.7498/aps.64.227801
Polarized properties of typical surface types over China based on the multi-angular polarized remote sensing measurements
Xiang Kun-Sheng1,2; Cheng Tian-Hai1; Gu Xing-Fa1; Guo Hong1; Chen Hao1; Wang Ying1; Wei Xi1,2; Bao Fang-Wen1,2
通讯作者Cheng Tian-Hai
来源期刊ACTA PHYSICA SINICA
ISSN1000-3290
出版年2015
卷号64期号:22
英文摘要

The surface polarized reflectance is able to fully reflect the physical characteristics of surface, such as vegetation classification, plant biomass estimation, leaf angle distribution and surface water content. The bidirectional polarization distribution function is a useful tool for quantitatively describing the surface polarized reflectance. The multi-angle polarized remote sensing reveals a significant advantage in capturing the radiation and polarization information. The polarization and directionality of the earth reflectance (POLDER) instrument is the only sensor which has provided a long-term trend of polarized measurements. Its combination of multi-spectral, polarization and multi-angle observations has considerable capability for retrieving ocean, land, cloud and aerosol properties. Until now, data obtained from POLDER has been widely used to study various surface bidirectional polarized reflectance models, especially Nadal model. However, parameters of Nadal model reveal a low accuracy in China region. In this study, the parameters of Nadal model suitable for China region are obtained and analyzed based on the POLDER-2 polarized reflectance data. Based on the modified parameters of Nadal model, polarized reflectance under different surface types is further analyzed. Our results show that the polarized reflectance retrieved from modified parameters of Nadal model reveals better correlation with the POLDER-2 products than the polarized reflectance from Nadal official parameters under different surface types. The polarization properties of three typical surfaces (forest, grassland and desert) are further investigated and reveal that 1) different surface polarized reflectances decrease with the increase of the scattering angle, and the polarized reflectance of the same object decreases as the normalized difference vegetation index increases; 2) significant discrepancies exist between the polarized reflectances of different surfaces, the polarized reflectance of forest is the lowest in the three surface types, then that of grass is the second lowest, and desert reveal the largest value (about twice that of forest), 3) the discrepancies of polarized reflectance between different surfaces have an increasing trend as satellite view zenith angle increases. This study will provide a priori knowledge for the detection of surface polarization properties and aerosol parameters based on multi-angle polarization remote sensing data, and also establish a good foundation for the quantitative applications of GF-5 satellite multi-angle polarization imager to be launched soon in China.


英文关键词multi-angle polarization polarization reflectance Nadal model remote sensing inversion
类型Article
语种中文
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000368824600042
WOS关键词VISIBLE-LIGHT ; LAND SURFACES ; AEROSOLS ; POLDER ; REFLECTANCE ; VEGETATION ; MODELS
WOS类目Physics, Multidisciplinary
WOS研究方向Physics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/185428
作者单位1.Chinese Acad Sci, Inst Remote Sensing & Digital Earth, State Key Lab Remote Sensing, Beijing 100101, Peoples R China;
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
推荐引用方式
GB/T 7714
Xiang Kun-Sheng,Cheng Tian-Hai,Gu Xing-Fa,et al. Polarized properties of typical surface types over China based on the multi-angular polarized remote sensing measurements[J],2015,64(22).
APA Xiang Kun-Sheng.,Cheng Tian-Hai.,Gu Xing-Fa.,Guo Hong.,Chen Hao.,...&Bao Fang-Wen.(2015).Polarized properties of typical surface types over China based on the multi-angular polarized remote sensing measurements.ACTA PHYSICA SINICA,64(22).
MLA Xiang Kun-Sheng,et al."Polarized properties of typical surface types over China based on the multi-angular polarized remote sensing measurements".ACTA PHYSICA SINICA 64.22(2015).
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