DocumentCode :
3559539
Title :
The GPS Contribution to the Error Budget of Surface Elevations Derived From Airborne LIDAR
Author :
King, Matt A.
Author_Institution :
Sch. of Civil Eng. & Geosci., Newcastle Univ., Newcastle upon Tyne
Volume :
47
Issue :
3
fYear :
2009
fDate :
3/1/2009 12:00:00 AM
Firstpage :
874
Lastpage :
883
Abstract :
When using airborne LIDAR to produce digital elevation models, the global positioning system (GPS) positioning of the LIDAR instrument is often the limiting factor, with accuracies typically quoted as being 10-30 cm. However, a comprehensive analysis of the accuracy and precision of GPS positioning of aircraft over large temporal and spatial scales is lacking from the literature. Here, an assessment is made of the likely GPS contribution to the airborne LIDAR measurement error budget by analyzing more than 500 days of continuous GPS data over a range of baseline lengths (3-960 km) and elevation differences (400-2000 m). Height errors corresponding to the 95th percentile are <0.15 m when using algorithms commonly applied in commercial software over 3-km baselines. These errors increase to 0.25 m at 45 km and <0.5 m at 250 km. At aircraft altitudes, relative heights are shown to be potentially biased by additional errors approaching 0.2 m, partly due to unmodeled tropospheric zenith total delay (ZTD). The application of advanced algorithms, including parameterization of the residual ZTD, gives error budgets that are largely constant despite baseline length and elevation differences. In this case, height errors corresponding to the 95th percentile are <0.22 m out to 960 km, and similar levels are shown for one randomly chosen day over a 2300-km baseline.
Keywords :
Global Positioning System; digital elevation models; error analysis; optical radar; remote sensing by radar; troposphere; GPS; Global Positioning System; airborne LIDAR; digital elevation models; distance 2300 km; distance 3 km; error budget; surface elevations; tropospheric zenith total delay; Aircraft navigation; Global Positioning System (GPS); error analysis; tropospheric propagation;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
Conference_Location :
12/12/2008 12:00:00 AM
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/TGRS.2008.2005730
Filename :
4711118
Link To Document :
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