Multibeam radar altimetry: spaceborne feasibility |
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Authors: | Miller L.S. Brown G.S. Choy L.W. |
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Affiliation: | Dept. of Phys. & Astron., Clemson Univ., SC ; |
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Abstract: | ![]() An analysis of the inherent height and spatial resolution of an off-nadir radar altimeter is presented. For the general case, mean-square height uncertainty is shown to be proportional to the cross-track beamwidth divided by the along-track beamwidth. Thus, the cross-track beamwidth should be minimized and the along-track beamwidth maximized, subject to resolution and other constraints. A pure multibeam system with a 50-km beam offset, an altitude of 800 km, a 13.5-GHz frequency, and a 4.5-m-diameter antenna is found to yield a height random error of less than 5 cm. For the same conditions, errors decrease with increasing frequency: however, rain attenuation becomes a factor |
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