Influence of BRDF Models and Solar Zenith Angles on Forest Above-Ground Biomass Derived from MODIS Multi-Angular Indices

Author:

Cui Lei12ORCID,Zhang Jiaying2,Dai Yiqun2,Xie Rui3,Zhu Zhongzheng4ORCID,Sun Mei5,Zhang Xiaoning6ORCID,He Long2,Zhang Hu2ORCID,Dong Yadong7ORCID,Zhao Kaiguang8

Affiliation:

1. Navigation College, Jimei University, Xiamen 361001, China

2. Faculty of Geographical, Tianjin Normal University, Tianjin 300387, China

3. International Institute for Earth System Science, Nanjing University, Nanjing 210023, China

4. National Tibetan Plateau Data Center (TPDC), State Key Laboratory of Tibetan Plateau Earth System Science, Environment and Resources (TPESER), Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing 100101, China

5. Industrial Technology Research Institute, Xiamen University of Technology, Xiamen 361024, China

6. School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 100081, China

7. State Key Laboratory of Remote Sensing Science, Jointly Sponsored by Beijing Normal University and Aerospace Information Research Institute of Chinese Academy of Sciences, Beijing Normal University, Beijing 100875, China

8. School of Environment and Natural Resources, The Ohio State University, Wooster, OH 43210, USA

Abstract

Multi-angular remote sensing observation contains crucial information on forest structure parameters. Here, our goal is to examine the ability of multi-angular indices, which are constructed by the typical-angular reflectances in red and NIR bands from MODIS observations, for the retrieval of forest biomass based on the field-measured above-ground biomass (AGB) data. Specifically, we employed the updated version of the MCD43A1 BRDF parameter product as an input for BRDF models to reconstruct the MODIS typical-angular reflectances. Furthermore, we evaluated the effects of different configurations of BRDF models and solar zenith angles (SZA) on forest AGB estimation using our developed multi-angular indices. The semivariogram analysis strategy combined with Landsat ground-surface reflectance data was employed to determine the MODIS pixel heterogeneity; the survey data from field sites of homogeneous pixels was used in our analysis and validation. The results show that our developed multi-angular indices based on a hot-revised BRDF model, under a SZA of 45°, when combined with forest cover information, can account for up to 72% of the variation forest AGB, with an RMSE = 45 Mg/ha. We also found that different kernels for the BRDF models influenced the weight parameters of the biomass inversion equation but did not significantly affect the estimated AGB. In conclusion, our method can enable the better usage of MODIS multi-angular observations for forest AGB estimation.

Funder

Chunhui Project Foundation of the Education Department of China

Tianjin Science and Technology Plan Project

Publisher

MDPI AG

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