165
Views
5
CrossRef citations to date
0
Altmetric
Articles

A novel SAR interferometry processing method in high resolution spotlight SAR

, &
Pages 1785-1802 | Received 11 Dec 2014, Accepted 10 Jun 2015, Published online: 17 Jul 2015

References

  • Cumming IG, Hawkins D, Gray AL. All-weather mapping with interferometric radar. Proceeding of 23rd International Symposium on Remote Sensing Environment; 1990; Bangkok. p. 1249–1262.
  • Graham LC. Synthetic interferometer radar for topographic mapping. Proc. IEEE. 1974;62:763–768. 10.1109/PROC.1974.9516
  • Rosen PA, Hensley S, Joughin IR, et al. Synthetic aperture radar interferometry. Proc. IEEE. 2000;88:333–382. 10.1109/5.838084
  • Sagués L, Bara M, Fàbregas X, Broquetas A. SAR interferometric coherence in wide band systems. J. Electromagn. Waves Appl. 2000;14:185–203. 10.1163/156939300X00725
  • Richards MA. A beginner's guide to interferometric SAR concepts and signal processing [aess tutorial iv]. IEEE Aerosp. Electron. Syst. Mag. 2007;22:5–29. 10.1109/MAES.2007.4350281
  • Madsen SN, Zebker HA, Martin J. Topographic mapping using radar interferometry: processing techniques. IEEE Trans. Geosci. Remote Sens. 1993;31:246–256. 10.1109/36.210464
  • Bamler R, Hartl P. Synthetic aperture radar interferometry. Inverse Prob. 1998;14:R1–R54. 10.1088/0266-5611/14/4/001
  • Li FK, Goldstein RM. Studies of multibaseline spaceborne interferometric synthetic aperture radars. IEEE Trans. Geosci. Remote Sens. 1990;28:88–97. 10.1109/36.45749
  • Costantini M. A novel phase unwrapping method based on network programming. IEEE Trans. Geosci. Remote Sens. 1998;36:813–821. 10.1109/36.673674
  • Small D, Werner C, Nüesch D. Baseline modelling for ERS-1 SAR interferometry. Proceeding of IGARSS; 1993 Aug; Tokyo, Japan. p. 1204–1206.
  • Karnoven J, Simila M, Makynen M. Open water detection from Baltic Sea ice Radarsat-1 SAR imagery. IEEE Trans. Geosci. Remote Sens. 2005;2:179–275.
  • Carrara WG, Majewski RM, Goodman RS. Spotlight synthetic aperture radar: signal processing algorithms. Norwood, (MA): Artech House; 1995.
  • Mittermayer J, Moreira A, Loffeld O. Spotlight SAR data processing using the frequency scaling algorithm. IEEE Trans. Geosci. Remote Sens. 1999;37:2198–2214. 10.1109/36.789617
  • Lanari R, Tesauro M, Sansosti E, Fornaro G. Spotlight SAR data focusing based on a two-step processing approach. IEEE Trans. Geosci. Remote Sens. 2001;39:1993–2004. 10.1109/36.951090
  • Eineder M, Schättler B, Breit H, Fritz T, Roth A. TerraSAR-X SAR products and processing algorithms. Proceeding of IGARSS; 2005 Jul; Seoul, Korea. p. 4870–4873.
  • Eineder M, Adam N, Bamler R, Yague-Martinez N, Breit H. Spaceborne spotlight SAR interferometry with TerraSAR-X. IEEE Trans. Geosci. Remote Sens. 2009;47:1524–1535. 10.1109/TGRS.2008.2004714
  • Fritz T, Eineder M. Basic product specification document, TerraSAR-X ground segment. DLR, TX-GS-DD-3302, 2008.
  • Hanssen RF. Radar interferometry: data interpretation and error analysis. New York (NY): Kluwer Academic Publishers; 2001. 10.1007/0-306-47633-9
  • Ghiglia DC, Romero LA. Minimum L^p-norm two-dimensional phase unwrapping. J. Opt. Soc. Am. A 1996;13:1999–2013. 10.1364/JOSAA.13.001999
  • Ghiglia DC, Pritt MD. Two-dimensional phase unwrapping: theory, algorithms, and software. New York (NY): Wiley; 1998.
  • Ferretti A, Guarnieri AM, Prati C, Rocca F, Massonnet D. InSAR Principles: guidelines for SAR interferometry processing and interpretation. Noordwijk: ESA Publications; 2007.
  • Hansen MW, Collard F, Dagestad K, Johannessen JA, Fabry P, Chapron B. Retrieval of sea surface range velocities from Envisat ASAR Doppler centroid measurements. IEEE Trans. Geosci. Remote Sens. 2011;49:3582–3592. 10.1109/TGRS.2011.2153864
  • Curlander JC, McDonough RN. Synthetic aperture radar: systems and signal processing. New York (NY): Wiley; 1991.
  • Madsen SN. Estimating the Doppler centroid of SAR data. IEEE Trans. AES. 1989;25:134–140.
  • Chen CW. Statistical-cost network-flow approaches to two-dimensional phase unwrapping for radar interferometry. Stanford, CA: Stanford University; 2001.
  • Shabou A, Baselice F, Ferraioli G. Urban digital elevation model reconstruction using very high resolution multichannel InSAR data. IEEE Trans. Geosci. Remote Sens. 2012;50: 4748–4758. 10.1109/TGRS.2012.2191155
  • Nico G, Palubinskas G, Datcu M. Bayesian approaches to phase unwrapping theoretical study. IEEE Trans. Geosci. Remote Sens. 2000;48: 2545–2556.
  • Yuan ZH, Deng YK, Li F, Wang R, Liu G, Han XL. Multichannel InSAR DEM reconstruction through improved closed-form robust Chinese remainder theorem. IEEE Geosci. Remote Sens. Lett. 2013;10:1314–1318. 10.1109/LGRS.2013.2238886
  • Baselice F, Ferraioli G, Pascazio V, Schirinzi G. Contextual information-based multichannel synthetic aperture radar interferometry: addressing DEM reconstruction using contextual information. IEEE Signal Process Mag. 2014;31:59–68. 10.1109/MSP.2014.2312282
  • Arabinda S, Dheeraj G. Derivation of topographic map from elevation data available in google earth. Civ. Eng. Urban planning Int. J. (CiVEJ). 2014;1:14–21.
  • Rusli N, Majid M, Din A. Google Earth’s derived digital elevation model: a comparative assessment with aster and SRTM data. IOP Conf. Ser.: Earth Environ. Sci. 2014;18:1–6.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.