It is difficult to accurately identify and extract bodies of water and underwater vegetation from satellite images using conventional vegetation indices, as the strong absorption of water weakens the spectral feature of high near-infrared (NIR) reflected by underwater vegetation in shallow lakes. This study used the shallow Lake Ulansuhai in the semi-arid region of China as a research site, and proposes a new concave–convex decision function to detect submerged aquatic vegetation (SAV) and identify bodies of water using Gao Fen 1 (GF-1) multi-spectral satellite images with a resolution of 16 meters acquired in July and August 2015. At the same time, emergent vegetation, “Huangtai algae bloom”, and SAV were classified simul...
The water column overlying the submerged aquatic vegetation (SAV) canopy presents difficulties when ...
Aquatic vegetation serves many important ecological and socioeconomic functions in lake ecosystems. ...
Abstract: Remote sensing of terrestrial vegetation has been successful thanks to the unique spectral...
It is difficult to accurately identify and extract bodies of water and underwater vegetation from sa...
Aquatic vegetation plays an important role in maintaining the balance of lake ecosystems. Thus, cla...
Submerged aquatic vegetation (SAV) is one of the main producers in inland lakes. Tracking the tempor...
Monitoring the growth and distribution of submerged aquatic vegetation (SAV) is crucial to the prote...
Aquatic vegetation is an important component and main primary producer of lake ecosystems and plays ...
The National Natural Science Foundation of China (Grant No. 41301375) State Key Program of the Nati...
A satellite-based algorithm intended to map submerged aquatic vegetation (SAV), which was mostly the...
Remote sensing of terrestrial vegetation has been successful thanks to the unique spectral character...
In previous attempts to identify aquatic vegetation from remotely-sensed images using classification...
Assessing the abundance of submerged aquatic vegetation (SAV), particularly in shallow lakes, is ess...
Satellite remote sensing can be an effective alternative for mapping cyanobacterial scums and aquati...
Satellite remote sensing can be an effective alternative for mapping cyanobacterial scums and aquati...
The water column overlying the submerged aquatic vegetation (SAV) canopy presents difficulties when ...
Aquatic vegetation serves many important ecological and socioeconomic functions in lake ecosystems. ...
Abstract: Remote sensing of terrestrial vegetation has been successful thanks to the unique spectral...
It is difficult to accurately identify and extract bodies of water and underwater vegetation from sa...
Aquatic vegetation plays an important role in maintaining the balance of lake ecosystems. Thus, cla...
Submerged aquatic vegetation (SAV) is one of the main producers in inland lakes. Tracking the tempor...
Monitoring the growth and distribution of submerged aquatic vegetation (SAV) is crucial to the prote...
Aquatic vegetation is an important component and main primary producer of lake ecosystems and plays ...
The National Natural Science Foundation of China (Grant No. 41301375) State Key Program of the Nati...
A satellite-based algorithm intended to map submerged aquatic vegetation (SAV), which was mostly the...
Remote sensing of terrestrial vegetation has been successful thanks to the unique spectral character...
In previous attempts to identify aquatic vegetation from remotely-sensed images using classification...
Assessing the abundance of submerged aquatic vegetation (SAV), particularly in shallow lakes, is ess...
Satellite remote sensing can be an effective alternative for mapping cyanobacterial scums and aquati...
Satellite remote sensing can be an effective alternative for mapping cyanobacterial scums and aquati...
The water column overlying the submerged aquatic vegetation (SAV) canopy presents difficulties when ...
Aquatic vegetation serves many important ecological and socioeconomic functions in lake ecosystems. ...
Abstract: Remote sensing of terrestrial vegetation has been successful thanks to the unique spectral...