DocumentCode
1111826
Title
Satellite laser altimetry of terrestrial topography: vertical accuracy as a function of surface slope, roughness, and cloud cover
Author
Harding, David J. ; Bufton, Jack L. ; Frawley, James J.
Author_Institution
NASA Goddard Space Flight Center, Greenbelt, MD, USA
Volume
32
Issue
2
fYear
1994
fDate
3/1/1994 12:00:00 AM
Firstpage
329
Lastpage
339
Abstract
Analysis of the sensitivity of laser ranging errors to surface conditions indicates that predicted single-shot range errors are primarily dependent on surface slope. Range errors are less sensitive to variations in surface roughness or reflectivity. Values of total surface slope and roughness for nine terrestrial landforms, derived from digital elevation data at a 186 m length scale, vary from 2° to 40° and 0.8 to 15 m, respectively, at a 90% frequency of occurrence. This range of surface morphologies yields a variation in single shot laser ranging error from 0.4 to 8 m, assuming system parameters for the proposed Topographic Mapping Laser Altimeter (TMLA) and a nominal 30% surface reflectivity. The total elevation accuracy of data obtained via satellite laser altimetry, although dominated by the range error, is also a function of additional error sources, including orbit ephemeris, atmospheric, and calibration errors. Averaging of multiple laser measurements improves the vertical accuracy of the elevation data by statistical reduction of random errors. During a three-year mission, two to three laser measurements will be acquired, on average, for each 200-m footprint at low to moderate latitudes, accounting for the latitudinal variation of ground track spacing and cloud cover. For high-latitude regions, the narrow spacing of satellite ground tracks in a polar orbit will provide frequent repeat observations yielding, on average, 4 to 25 measurements of each footprint over the Antarctic and Greenland ice sheets. Averaging of these multiple repeat observations at high latitude will yield an improvement in vertical accuracy by a factor of two to five
Keywords
geodesy; geophysical techniques; glaciology; hydrological techniques; laser ranging; optical radar; remote sensing; remote sensing by laser beam; topography (Earth); Antarctica; Greenland ice sheets; TMLA; Topographic Mapping Laser Altimeter; cloud cover; errors; geodesy; geophysical measurement technique; glaciology; land surface topography; laser ranging; roughness; satellite laser altimetry method; single shot; surface slope; vertical accuracy; Extraterrestrial measurements; Laser modes; Laser radar; Reflectivity; Rough surfaces; Satellites; Surface emitting lasers; Surface morphology; Surface roughness; Surface topography;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.295048
Filename
295048
Link To Document