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A NOVEL ESTIMATION APPROACH OF DYNAMIC AND COUPLING BASELINE FOR DISTRIBUTED SATELLITE SAR
Author(s) -
Liang Feng,
Huaping Xu,
Chunsheng Li,
Shuang Li,
Han Gao
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/pier11083105
Subject(s) - baseline (sea) , satellite , remote sensing , computer science , estimation , coupling (piping) , geology , systems engineering , aerospace engineering , engineering , oceanography , mechanical engineering
In distributed satellite synthetic aperture radar (DS- SAR), along-track and cross-track baselines couple with each other and change dynamically due to formation ∞ying, which makes it di-cult to estimate interferometric baseline accurately. To solve the problem, a novel high-precision baseline estimation approach based on interferometric phase is proposed. By modeling accurate relationship between coupling baselines and two-dimensional (azimuth and range) inteferometric fringe frequency under the ellipsoid earth model, the along-track and cross-track baseline can be estimated separately by interferometric phase decoupling. By selecting several segments from interferometric phase during the whole data-take time and estimating instantaneous baseline of each segment, the dynamic baseline can be obtained via a linear flltering. Besides, to improve the baseline estimation accuracy, Semi-Newton iterative method is applied to acquire high-precision fringe frequency estimation, which can make the baseline estimation achieve centimeter level precision. The simulation validates the approach.

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