B009
Advances in Remote Sensing Theory on Vegetation: Radiative Transfer Modeling, Inversion, and Applications III eLightning

Monday, 7 December 2020: 07:00-08:00
Virtual
Primary Convener:  Yelu Zeng, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States
Conveners:  Yuri Knyazikhin, Boston University, Earth and Environment, Boston, MA, United States, Min Chen, Pacific Northwest National Laboratory, Joint Global Change Research Institute, Richland, WA, United States and Tiangang Yin, NASA Goddard Space Flight Center, Greenbelt, MD, United States
Primary Liaison:  Yelu Zeng, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States
Chairs:  Yelu Zeng, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States, Yuri Knyazikhin, Boston University, Earth and Environment, Boston, MA, United States and Tiangang Yin, NASA Goddard Space Flight Center, Greenbelt, MD, United States
OSPA Liaison:  Min Chen, Pacific Northwest National Laboratory, Joint Global Change Research Institute, Richland, WA, United States
07:00
Eigenvalues and eigenfunctions of the two-stream radiative transfer problem in vegetation (685671)
Matti Mottus, VTT Technical Research Centre of Finland, Espoo, Finland and Tiit Nilson, University of Tartu, Tartu Observatory, Tartu, Estonia
07:03
A simple leaf-scale radiative transfer model by spectral invariant theory (696518)
Yelu Zeng, Pacific Northwest National Laboratory, Joint Global Change Research Institute, College Park, MD, United States, Wu Shengbiao, The University of Hong Kong, School of Biological Sciences,, Hong Kong, China, Dalei Hao, Pacific Northwest National Laboratory, Atmospheric Sciences and Global Change Division, Richland, WA, United States and Min Chen, Pacific Northwest National Laboratory, Joint Global Change Research Institute, Richland, WA, United States
07:06
Canopy structure: the link between optical and lidar remote sensing through canopy spectral invariants (763054)
Josh Enterkine1, Nancy F Glenn1, Hamid Dashti2, Susan Ustin3 and Yuri Knyazikhin4, (1)Boise State University, Department of Geosciences, Boise, ID, United States, (2)University of Arizona, School of Natural Resources and the Environment, Tucson, AZ, United States, (3)University of California Davis, Davis, CA, United States, (4)Boston University, Earth and Environment, Boston, MA, United States
07:09
Applying Spectral Invariants to High Spatial Resolution Spectral Imaging of Vegetation (690197)
Olli Ihalainen and Matti Mottus, VTT Technical Research Centre of Finland, Espoo, Finland
07:12
How well can we estimate the Directional Area Scattering Factor from Directional Reflectance Measurements of Vegetation Canopies? (697793)
Richard Fernandes, Government of Canada, Canada C, Ottawa, ON, Canada; Government of Canada, Canada Centre for Remote Sensing, Ottawa, ON, Canada
07:15
Modelling vegetation angular signatures from DSCOVR/EPIC and MISR Observations (698950)
Xiangnan Ni1,2, Yuanheng Sun1,3, Xiaojun She1,4, Yuri Knyazikhin1 and Ranga Myneni1, (1)Boston University, Earth and Environment, Boston, MA, United States, (2)Xi'an Jiaotong University, Xian, China, (3)Peking University, Earth and Space Science, Beijing, China, (4)Southwest University, Chongqing, China
07:21
Assessing the influence of vegetation properties on multi-frequency microwave vegetation optical depth (695874)
Luisa Schmidt, Dresden University of Technology, Department of Geosciences, Dresden, Germany, Matthias Forkel, Dresden University of Technology, Institute of Photogrammetry and Remote Sensing, Dresden, Germany, Wouter Dorigo, Vienna University of Technology, Department for Geodesy and Geoinformation, Vienna, Austria, Leander Moesinger, Vienna University of Technology, Department of Geodesy and Geoinformation, Vienna, Austria, Robin van der Schalie, VanderSat B.V., Haarlem, Netherlands, Marta Yebra, The Australian National University, Fenner School of Environment and Society, Acton, Australia and Thomas Pugh, University of Birmingham, School of Geography, Earth & Environmental Sciences and Birmingham Institute of Forest Research, Birmingham, B15, United Kingdom
07:24
Retrieval of tree branch architecture attributes using terrestrial laser scanning technology (671402)
Yanjun Su1, Yumei Li2, Hongcan Guan2, Tianyu Hu2 and Qinghua Guo2, (1)IB Institute of Botany, Chinese Academy of Sciences, Beijing, China, (2)Institute of Botany, Chinese Academy of Sciences, Beijing, China
07:27
Estimating Green Area Index (GAI) from radiative transfer model: application of the Bayesian theory to account for crop-specificities (724195)
Jingwen Wang1,2, Raul Lopez-Lozano1, Marie Weiss1, Samuel Buis1, Wenjuan Li3, Jiahua Zhang2 and Frederic Baret1, (1)INRAE, Avignon, France, (2)Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing, China, (3)HIPHEN, Avignon, France
07:30
Application of the Monte Carlo method to describe the radiative transfer within a spatially non-uniform forest canopy (692235)
Nataliya Levashova1, David Gandilyan1 and Alexander Olchev2, (1)Lomonosov Moscow State University, Physics, Moscow, Russia, (2)Lomonosov Moscow State University, Geography, Moscow, Russia
07:33
The long-term observation of PRI and LUE and phenological changes in a temperate Japanese cypress forest at Kiryu Japan. (728169)
Siyu Chen1, Yoshiko Kosugi1, Tatsuro Nakaji2, Hibiki Noda3, Kenlo Nishida Nasahara4 and Kouki Kikosaka5, (1)Kyoto University, Graduate School of Agriculture, Kyoto, Japan, (2)Hokkaido University, Tomakomai Experimental Forest, Field Science Center for Northern Biosphere, Sapporo, Japan, (3)NIES National Institute of Environmental Studies, Tsukuba, Japan, (4)University of Tsukuba, Tsukuba, Japan, (5)Tohoku University, Sendai, Japan
07:36
AdaBoost-based Back Propagation Neural Networks Improve the Estimation Accuracy of Pear Leaf Nitrogen Concentration by the In-field VIS-NIR Spectroscopy (734145)
Jie Wang1, Xiaojun Shi1, Yangchun Xu2 and Caixia Dong2, (1)Southwest University, Chongqing, China, (2)Nanjing agricultural university, Nanjing, China
07:39
Characterization of the spatial variability of bidirectional reflectance distribution function parameters over a heterogeneous rice paddy landscape (766348)
Juwon Kong1, Youngryel Ryu1,2, Benjamin Dechant3, Sungchan Jeong2 and Wonseok Choi2, (1)Interdisciplinary Program in Landscape Architecture, Seoul National University, Seoul, South Korea, (2)Department of Landscape Architecture and Rural Systems Engineering, Seoul National University, Seoul, South Korea, (3)Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, South Korea
07:42
Preliminary assessment of fine-scale surface albedo based on 30-m Landsat or HJ series satellites over mountainous land surface (716220)
Xingwen Lin, College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua, Zhejiang, China, Jianguang Wen, RADI, Chinese Academy of Sciences, Beijing, China, Juan Cheng, Chinese Academic of Science, Beijing, China, MIn He, Chinese academic of science, Beijing, China and Dongqin You
07:45
Generating Diurnal to Seasonal Bidirectional Reflectance Factors from GK-2A Geostationary Satellite (768194)
Sungchan Jeong1, Youngryel Ryu2, Juwon Kong3 and Wonseok Choi1, (1)Department of Landscape Architecture and Rural Systems Engineering, Seoul National University, Seoul, South Korea, (2)Seoul National University, Department of Landscape Architecture and Rural Systems Engineering, Seoul, South Korea, (3)Interdisciplinary Program in Landscape Architecture, Seoul National University, Seoul, South Korea
07:48
A forest thermal radiation directionality model with structural and thermal stratification (715972)
Zunjian Bian, Biao Cao, Hua Li, Du Yongming, Qing Xiao and Liu Qinhuo, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing, China
07:51
Discussion
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