Adam, Nico Alexander (2022) Empirical Bayesian Estimation of the Interferometric SAR Coherence Magnitude. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 15, Seiten 6306-6323. IEEE - Institute of Electrical and Electronics Engineers. doi: 10.1109/JSTARS.2022.3192894. ISSN 1939-1404.
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Offizielle URL: https://ieeexplore.ieee.org/document/9835014
Kurzfassung
SAR interferometry has developed rapidly in recent years and now allows measurements of subtle deformation of the Earth's surface with millimeter accuracy. All state-of-the-art processing methods require a precise coherence estimate. However, this estimate is a random variable and biased toward higher values. Up to now, little is published on the Bayesian estimation of the degree of coherence. The objective of the paper is to develop empirical Bayesian estimators and to assess their characteristics by simulations. Bayesian estimation is understood as a regularization of the maximum likelihood estimation. The more information is used and the stricter the general prior, the more accurate the estimate will be. Three levels of prior information are developed: (1) an uninformative prior and (2) an informative prior which can be implemented as (2a) less strict prior and (2b) strict prior. The informative priors are described by a single parameter only i.e. the maximum underlaying coherence. The paper reports on the bias, the standard deviation and the root mean square error (RMSE) of the developed estimators. It was found that all empirical Bayes estimators improve the coherence estimation from small samples and for small underlaying coherences compared to the conventional sample estimator. E.g. a zero underlaying coherence is estimated by the expected a posteriori estimator without additional information with a 33.3% reduced bias using three samples only. Assuming the maximum underlaying coherence is 0.6, the bias is reduced by 51.3% for the strict prior and by 36.6% for the less strict prior. In addition, it was found that the methods work very well even for the extremely small sample size of only 2 values.
elib-URL des Eintrags: | https://elib.dlr.de/187638/ | ||||||||
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Dokumentart: | Zeitschriftenbeitrag | ||||||||
Titel: | Empirical Bayesian Estimation of the Interferometric SAR Coherence Magnitude | ||||||||
Autoren: |
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Datum: | 21 Juli 2022 | ||||||||
Erschienen in: | IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing | ||||||||
Referierte Publikation: | Ja | ||||||||
Open Access: | Ja | ||||||||
Gold Open Access: | Ja | ||||||||
In SCOPUS: | Ja | ||||||||
In ISI Web of Science: | Ja | ||||||||
Band: | 15 | ||||||||
DOI: | 10.1109/JSTARS.2022.3192894 | ||||||||
Seitenbereich: | Seiten 6306-6323 | ||||||||
Verlag: | IEEE - Institute of Electrical and Electronics Engineers | ||||||||
ISSN: | 1939-1404 | ||||||||
Status: | veröffentlicht | ||||||||
Stichwörter: | Bayesian inference, Coherence magnitude, Degree of coherence, Distributed Scatterers in SqueeSAR or CESAR or phase linking, Empirical Bayes method, Expected a posteriori estimation, Interferometric SAR (InSAR), Maximum a posteriori estimation, Median a posteriori estimation | ||||||||
HGF - Forschungsbereich: | Luftfahrt, Raumfahrt und Verkehr | ||||||||
HGF - Programm: | Raumfahrt | ||||||||
HGF - Programmthema: | Erdbeobachtung | ||||||||
DLR - Schwerpunkt: | Raumfahrt | ||||||||
DLR - Forschungsgebiet: | R EO - Erdbeobachtung | ||||||||
DLR - Teilgebiet (Projekt, Vorhaben): | R - SAR-Methoden | ||||||||
Standort: | Oberpfaffenhofen | ||||||||
Institute & Einrichtungen: | Institut für Methodik der Fernerkundung > SAR-Signalverarbeitung | ||||||||
Hinterlegt von: | Adam, Nico Alexander | ||||||||
Hinterlegt am: | 27 Jul 2022 13:39 | ||||||||
Letzte Änderung: | 04 Mai 2023 17:25 |
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