A systematic review of the application of the geostationary ocean color imager to the water quality monitoring of inland and coastal waters

S Shao, Y Wang, G Liu, K Song - Remote Sensing, 2024 - mdpi.com
In recent decades, eutrophication in inland and coastal waters (ICWs) has increased due to
anthropogenic activities and global warming, thus requiring timely monitoring. Compared …

[HTML][HTML] An improved fusion of Landsat-7/8, Sentinel-2, and Sentinel-1 data for monitoring alfalfa: Implications for crop remote sensing

J Chen, Z Zhang - International Journal of Applied Earth Observation and …, 2023 - Elsevier
Precision agriculture management with remote sensing big data provides a promising
solution to monitor crops. Alfalfa is an important forage crop for various livestock around the …

In-orbit test of the polarized scanning atmospheric corrector (PSAC) onboard Chinese environmental protection and disaster monitoring satellite constellation HJ-2 A/B

Z Li, Y **e, W Hou, Z Liu, Z Bai, J Hong… - … on Geoscience and …, 2022 - ieeexplore.ieee.org
As the successors of the overdue Huan**gJianzai-1 (HJ-1) satellites and new members in
Chinese Environmental Protection and Disaster Monitoring Satellite Constellation, the first …

[HTML][HTML] Monitoring multi-temporal and spatial variations of water transparency in the Jiaozhou Bay using GOCI data

Y Zhou, D Yu, W Cheng, Y Gai, H Yao, L Yang… - Marine pollution …, 2022 - Elsevier
Water transparency, commonly measured as Secchi disk depth (SDD), is essential for
describing the optical properties of coastal waters. We proposed a regional linear corrected …

Atmospheric correction of absorbing aerosols for satellite ocean color remote sensing over coastal waters

Z Song, X He, Y Bai, X Dong, D Wang, T Li… - Remote Sensing of …, 2023 - Elsevier
The atmospheric correction (AC) of satellite ocean color remote sensing, which is affected by
the vertical distribution of absorbing aerosols (AA), is prone to large uncertainties in the …

Atmospheric correction under cloud edge effects for Geostationary Ocean Color Imager through deep learning

J Men, L Feng, X Chen, L Tian - ISPRS Journal of Photogrammetry and …, 2023 - Elsevier
Abstract The Geostationary Ocean Color Imager (GOCI) is widely employed in tracking
diurnal dynamics of oceanic conditions. However, the current atmospheric correction (AC) …

Atmospheric correction algorithm based on deep learning with spatial-spectral feature constraints for broadband optical satellites: Examples from the HY-1C Coastal …

X Zhao, Y Ma, Y **ao, J Liu, J Ding, X Ye… - ISPRS Journal of …, 2023 - Elsevier
Broadband optical satellites have been widely used for fine monitoring of coastal waters and
inland lakes for their high spatial resolution. Atmospheric correction (AC) is one of the …

Development and Prospect of Satellite Remote Sensing Technology for Ocean Dynamic Environment

Q Zhang, L Zhang, Y Jia, B Wang, S Li - Journal of Spacecraft and …, 2023 - arc.aiaa.org
OCEAN satellites detect the global sea area in a wide swath with high timeliness. It is of
great significance for humans to acquire ocean information and monitor ocean changes …

[HTML][HTML] An adaptive atmospheric correction algorithm for the effective adjacency effect correction of submeter-scale spatial resolution optical satellite images …

T Wang, L Du, W Yi, J Hong, L Zhang, J Zheng… - Remote Sensing of …, 2021 - Elsevier
The adjacency effect can blur and reduce the contrast of satellite images. For low visibility,
the adjacency effect has a crucial impact on submeter-scale spatial resolution optical (SM) …

[HTML][HTML] Atmospheric correction of geostationary ocean color imager data over turbid coastal waters under high solar zenith angles

H Li, X He, P Shanmugam, Y Bai, X **, Z Wang… - ISPRS Journal of …, 2024 - Elsevier
The traditional atmospheric correction models employed with the near-infrared iterative
schemes inaccurately estimate aerosol radiance at high solar zenith angles (SZAs), leading …