Topographic correction of optical remote sensing images in mountainous areas: A systematic review

R Chen, G Yin, W Zhao, K Yan, S Wu… - IEEE Geoscience and …, 2023 - ieeexplore.ieee.org
Rugged terrain distorts optical remote sensing observations and subsequently impacts land
cover classification and biophysical and biochemical parameter retrieval over mountainous …

Estimating leaf area index and light extinction coefficient using Random Forest regression algorithm in a tropical moist deciduous forest, India

R Srinet, S Nandy, NR Patel - Ecological Informatics, 2019 - Elsevier
Leaf area index (LAI) and light extinction coefficient (k) are the key structural parameters
controlling many canopy functions like radiation and water interception, radiation extinction …

An integrated method for validating long-term leaf area index products using global networks of site-based measurements

B Xu, J Li, T Park, Q Liu, Y Zeng, G Yin, J Zhao… - Remote Sensing of …, 2018 - Elsevier
Long-term ground LAI measurements from the global networks of sites (eg FLUXNET) have
emerged as a promising data source to validate remotely sensed global LAI product time …

Mapping the structure of Borneo's tropical forests across a degradation gradient

M Pfeifer, L Kor, R Nilus, E Turner, J Cusack… - Remote Sensing of …, 2016 - Elsevier
Abstract South East Asia has the highest rate of lowland forest loss of any tropical region,
with logging and deforestation for conversion to plantation agriculture being flagged as the …

[HTML][HTML] Towards scalable estimation of plant functional diversity from Sentinel-2: In-situ validation in a heterogeneous (semi-) natural landscape

LT Hauser, JB Féret, NA Binh, N van Der Windt… - Remote Sensing of …, 2021 - Elsevier
Large-scale high-resolution satellite observations of plant functional diversity patterns will
greatly benefit our ability to study ecosystem functioning. Here, we demonstrate a potentially …

Generating global products of LAI and FPAR from SNPP-VIIRS data: Theoretical background and implementation

K Yan, T Park, C Chen, B Xu, W Song… - … on Geoscience and …, 2018 - ieeexplore.ieee.org
Leaf area index (LAI) and fraction of photosynthetically active radiation (FPAR) absorbed by
vegetation have been successfully generated from the Moderate Resolution Imaging …

PLC: A simple and semi-physical topographic correction method for vegetation canopies based on path length correction

G Yin, A Li, S Wu, W Fan, Y Zeng, K Yan, B Xu… - Remote Sensing of …, 2018 - Elsevier
Rugged terrain distorts optical remote sensing signals, and land-cover classification and
biophysical parameter retrieval over mountainous regions must account for topographic …

Generation of a 16 m/10-day fractional vegetation cover product over China based on Chinese GaoFen-1 observations: method and validation

J Zhao, J Li, Q Liu, B Xu, X Mu… - International Journal of …, 2023 - Taylor & Francis
As China has recently launched the GaoFen-1 satellite (GF-1) carrying on the wide-field
view (WFV) sensor, it is a challenging task to make full use of its observations to produce the …

Modeling the radiation regime of a discontinuous canopy based on the stochastic radiative transport theory: Modification, evaluation and validation

K Yan, Y Zhang, Y Tong, Y Zeng, J Pu, S Gao… - Remote Sensing of …, 2021 - Elsevier
Canopy radiative transfer (RT) modeling is critical for the quantitative retrieval of vegetation
biophysical parameters and has been under intensive research over the decades. RT …

Modeling canopy reflectance over sloping terrain based on path length correction

G Yin, A Li, W Zhao, H Jin, J Bian… - IEEE Transactions on …, 2017 - ieeexplore.ieee.org
Sloping terrain induces distortion of canopy reflectance (CR), and the retrieval of biophysical
variables from remote sensing data needs to account for topographic effects. We developed …