EFFICIENT GEOSYNCHRONOUS CIRCULAR SAR RAW DATA SIMULATION OF EXTENDED 3-D SCENES
Author(s) -
Qi Liu,
Wen Hong,
Weixian Tan,
Yirong Wu
Publication year - 2012
Publication title -
electromagnetic waves
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.437
H-Index - 89
eISSN - 1559-8985
pISSN - 1070-4698
DOI - 10.2528/pier12030306
Subject(s) - geosynchronous orbit , raw data , computer science , remote sensing , computer graphics (images) , artificial intelligence , geology , engineering , aerospace engineering , satellite , programming language
Geosynchronous Circular Synthetic Aperture Radar (GeoCSAR) has the Circular SAR conflguration and undergoes a near- ellipse geosynchronous track rather a \8"-like track of conventional GeoSAR. It could produce three dimensional (3-D) images of extended Earth scenes. GeoCSAR raw data simulator is of vital for predicting system performance, developing suitable data processing algorithms, etc.. It should include degrading conditions such as motion instability, angular deviations and orbit perturbations in order to approach the real situation. The common generation algorithm of raw data in time domain is precise but time-consuming for extended 3-D scene. In this paper, a novel raw data simulation algorithm based on inverse Improved Polar Format Algorithm (IPFA) for GeoCSAR was proposed, which possessed both the advantages of precision of time domain simulator and e-ciency of frequency domain simulator. Implementation details were presented, and several simulation results were provided and analyzed to validate the algorithm.
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