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Geocoding SAR interferograms by least squares adjustment
Institution:1. 2832 Emerson Ave S., Minneapolis, MN 55408, United States of America;2. Natural Resources & Environmental Science, University of Nevada, Reno, Fleischmann Agriculture Room 220A, 1664 N Virginia St MS0186, Reno, NV 89557, United States of America;1. Specialist Division, Repsol Exploración S.A., Madrid, Spain;2. Specialist Division, Repsol Services, The Woodlands, Texas, United States;3. Geomodels Research Institute, Departament de Dinàmica de la Terra i de l’Oceà, Facultat de Ciències de la Terra, Universitat de Barcelona, Barcelona, Spain
Abstract:A geocoding model for Synthetic Aperture Radar (SAR) interferometry based on a least-squares adjustment combining interferometric phase, range, Doppler centroid frequency, flight path and control point data is proposed. The complete mathematical framework for the computation of object space coordinates without approximations is presented. It provides a way to an efficient implementation of the algorithm for geocoding the pixels of an interferogram. The method is preferably applicable to spaceborne dual-pass interferometry, and independent of the orbit configuration. An accuracy analysis of object point positioning is conducted and results of geocoding an ERS tandem interferogram are shown.
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