Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model
To reduce the size and cost of an integrated infrared (IR) and green airborne LiDAR bathymetry (ALB) system, and improve the accuracy of the green ALB system, this study proposes a method to accurately determine water surface and water bottom heights using a single green laser corrected by the near...
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doaj-180bde5a19f54b438401df81df8e29702020-11-25T01:00:58ZengMDPI AGRemote Sensing2072-42922017-04-019542610.3390/rs9050426rs9050426Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration ModelJianhu Zhao0Xinglei Zhao1Hongmei Zhang2Fengnian Zhou3School of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, ChinaSchool of Geodesy and Geomatics, Wuhan University, 129 Luoyu Road, Wuhan 430079, ChinaAutomation Department, School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, ChinaThe Survey Bureau of Hydrology and Water Resources of Yangtze Estuary, Shanghai 200136, ChinaTo reduce the size and cost of an integrated infrared (IR) and green airborne LiDAR bathymetry (ALB) system, and improve the accuracy of the green ALB system, this study proposes a method to accurately determine water surface and water bottom heights using a single green laser corrected by the near water surface penetration (NWSP) model. The factors that influence the NWSP of green laser are likewise analyzed. In addition, an NWSP modeling method is proposed to determine the relationship between NWSP and the suspended sediment concentration (SSC) of the surface layer, scanning angle of a laser beam and sensor height. The water surface and water bottom height models are deduced by considering NWSP and using only green laser based on the measurement principle of the IR laser and green laser, as well as employing the relationship between NWSP and the time delay of the surface return of the green laser. Lastly, these methods and models are applied to a practical ALB measurement. Standard deviations of 3.0, 5.3, and 1.3 cm are obtained by the NWSP, water-surface height, and water-bottom height models, respectively. Several beneficial conclusions and recommendations are drawn through the experiments and discussions.http://www.mdpi.com/2072-4292/9/5/426airborne LiDAR bathymetrynear water surface penetrationwater surface heightwater bottom heightsuspended sediment concentration of the surface layer |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jianhu Zhao Xinglei Zhao Hongmei Zhang Fengnian Zhou |
spellingShingle |
Jianhu Zhao Xinglei Zhao Hongmei Zhang Fengnian Zhou Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model Remote Sensing airborne LiDAR bathymetry near water surface penetration water surface height water bottom height suspended sediment concentration of the surface layer |
author_facet |
Jianhu Zhao Xinglei Zhao Hongmei Zhang Fengnian Zhou |
author_sort |
Jianhu Zhao |
title |
Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model |
title_short |
Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model |
title_full |
Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model |
title_fullStr |
Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model |
title_full_unstemmed |
Shallow Water Measurements Using a Single Green Laser Corrected by Building a Near Water Surface Penetration Model |
title_sort |
shallow water measurements using a single green laser corrected by building a near water surface penetration model |
publisher |
MDPI AG |
series |
Remote Sensing |
issn |
2072-4292 |
publishDate |
2017-04-01 |
description |
To reduce the size and cost of an integrated infrared (IR) and green airborne LiDAR bathymetry (ALB) system, and improve the accuracy of the green ALB system, this study proposes a method to accurately determine water surface and water bottom heights using a single green laser corrected by the near water surface penetration (NWSP) model. The factors that influence the NWSP of green laser are likewise analyzed. In addition, an NWSP modeling method is proposed to determine the relationship between NWSP and the suspended sediment concentration (SSC) of the surface layer, scanning angle of a laser beam and sensor height. The water surface and water bottom height models are deduced by considering NWSP and using only green laser based on the measurement principle of the IR laser and green laser, as well as employing the relationship between NWSP and the time delay of the surface return of the green laser. Lastly, these methods and models are applied to a practical ALB measurement. Standard deviations of 3.0, 5.3, and 1.3 cm are obtained by the NWSP, water-surface height, and water-bottom height models, respectively. Several beneficial conclusions and recommendations are drawn through the experiments and discussions. |
topic |
airborne LiDAR bathymetry near water surface penetration water surface height water bottom height suspended sediment concentration of the surface layer |
url |
http://www.mdpi.com/2072-4292/9/5/426 |
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