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Research Article

Removing cross-track interferometric phase in the along-track interferometry method for sea surface current inversion

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Received 24 Jul 2023, Accepted 11 Jun 2024, Published online: 24 Jun 2024

References

  • Amidror, I., April 2002. Scattered data interpolation methods for electronic imaging systems: a survey. Journal of Electronic Im-Aging, 11 (2), 157–176. doi:10.1117/1.1455013
  • Chassignet, E.P., et al. 2007. The HYCOM (hybrid coordinate ocean model) data assimilative sys-tem. Journal of Marine Systems, 65 (1–4), 60–83. doi:10.1016/j.jmarsys.2005.09.016
  • Chen, S., et al. 15 Nov 2023. Estimation of sea surface nitrate from space: Current status and future potential. Science of the Total Environment, 899, 165690. doi:10.1016/j.scitotenv.2023.165690
  • Defense Mapping Agency, 1997. Department of Defense World Geodetic System 1984: Its definition and relationship with local geodetic systems. Tech. Rep. TR 8350.2, Washington, DC: National Imagery and Mapping Agency. Available from: http://earth-info.nga.mil/GandG/publications/tr8350.2/tr8350_2.html.
  • Elyouncha, A., Eriksson, L.E.B., and Johnsen, H., 2022. Direct comparison of sea surface velocity estimated from sentinel-1 and TanDEM-X SAR data. IEEE Journal of Selected Topics in Applied Earth Observations & Remote Sensing, 15, 2425–2436. doi:10.1109/JSTARS.2022.3158190
  • Elyouncha, A., Eriksson, L., Romeiser, R., and Ulander L.M. 2017. Phase calibration of TanDEM-X ATI-SAR data for sea surface velocity measurements//2017. In: IEEE International Geoscience and Remote Sensing Symposium (IGARSS), 2017. IEEE. doi:10.1109/IGARSS.2017.8127103
  • Elyouncha, A., Eriksson, L., Romeiser, R., and Ulander L.M., 2019. Measurements of Sea Surface Currents in the Baltic Sea Region Using Space-borne Along-Track InSAR. IEEE Transactions on Geoscience and Remote Sensing, 57 (11), 8584–8599. doi:10.1109/TGRS.2019.2921705
  • Frasier, S.J. and Camps, A.J., 2001. Dual-beam interferometry for ocean surface current vector mapping. IEEE Transactions on Geo-Science & Remote Sensing, 39 (2), 401–414. doi:10.1109/36.905248
  • Fu-Cheng, H., Jun-Min, M., and Xi, Z., 2019. Using the Doppler shift method to retrieve the ASAR sea surface velocity. Advances in Marine Science, 37 (2), 274–283.
  • Goldstein, R.M. and Zebker, H.A., 1987. Interferometric radar measurement of ocean surface currents. Nature, 328 (6132), 707–709. doi:10.1038/328707a0
  • Johannessen, J.A., et al. Jul 2005. On radar imaging of current features: 2. Mesoscale eddy and current front detection. JGR Oceans, 110 (C7), 1–14. doi:10.1029/2004JC002802
  • Kabir, A., Lemongo-Tchamba, I., and Fernandez, A., 2015. An assessment of available sea surface current hydrokinetic energy near the North Carolina shore. Renewable Energy, 80, 301–307. doi:10.1016/j.renene.2015.02.011
  • Kanevsky, M.B., 2008. Radar imaging of the ocean waves. doi:10.1016/B978-0-444-53209-1.X0001-9
  • Kudryavtsev, V., et al. Jul 2005. On radar imaging of current features: 1. Model and comparison with observations. JGR Oceans, 110 (C7), 1–27. doi:10.1029/2004JC002505
  • Liang-Sheng, L. et al. 2020. TH-2 satellite engineering design and implementation. Acta Geodaetica et Carto-graphica Sinica, 49 (10), 1252–1264.
  • Luecke, C.A., et al. 2020. Statistical comparisons of temperature variance and kinetic energy in global ocean models and observations: results from mesoscale to internal wave frequencies. Journal of Geophysical Research Oceans, 125 (5), e2019JC015306. doi:10.1029/2019JC015306
  • Moller, D., Frasier, S.J., Porter, D.L., and McIntosh R.E., 1998. Radar-derived interferometric surface currents and their relationship to subsurface current structure. Journal of Geophysical Research Oceans, 103 (C6), 12839–12852. doi:10.1029/98JC00781
  • Oppenheim, A.V., Schafer, R.W., and Buck, J.R., 1999. Discrete-time signal processing. Upper Saddle River, NJ: Prentice-Hall.
  • Rashid, M. and Gierull, C.H., 2021. Retrieval of ocean surface radial velocities with RADARSAT-2 along-track interferometry. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 14, 9597–9608. doi:10.1109/JSTARS.2021.3110198
  • Romeiser, R., et al. 2005. Current measurements by SAR along-track interferometry from a space shuttle current measurements by SAR along-track interferometry from a space shuttle. IEEE Transactions on Geoscience and Remote Sensing: A Publication of the IEEE Geoscience and Remote Sensing Society, 43 (10, Oct), 2315–2324. doi:10.1109/TGRS.2005.856116
  • Romeiser, R., et al. 2014. Quality assessment of surface current fields from ter-raSAR-X and TanDEM-X along-track interferometry and Doppler centroid analysis. IEEE Transactions on Geoscience & Remote Sensing, 52 (5), 2759–2772. doi:10.1109/TGRS.2013.2265659
  • Romeiser, R. and Thompson, D.R., 2000. Numerical study on the along-track interferometric radar imaging mechanism of oceanic surface currents. Geoscience and Remote Sensing, IEEE Transactions On, 38 (1), 446–458. doi:10.1109/36.823940
  • Savage, J.A., Tokmakian, R.T., and Batteen, M.L., 2015. Assessment of the HYCOM velocity fields during agulhas return current cruise 2012. Journal of Operational Oceanography, 8 (1), 11–24. doi:10.1080/1755876X.2015.1014637
  • Suchandt, S., and Runge, H. 2012. Along-track interferometry using TanDEM-X: first results from marine and land applications. 392–395.
  • Thompson, D.R., 1989. Calculation of microwave Doppler spectra from the ocean surface with a time-dependent composite model.
  • Thompson, D.R., Gotwols, B.L., and Keller, W.C., 1991. A comparison of K u -band Doppler measurements at 20° incidence with predictions from a time-dependent scattering model. Journal of Geophysical Research Oceans, 96 (C3), 4947–4955. doi:10.1029/90JC02210
  • Vallado, D.A., 1997. Fundamentals of astrodynamics and applications. New York: McGraw-Hill.
  • Wei, L., et al. 2012. Sea surface flow field retrieval and estimation based on satellite remote sensing data. Progress in Geophysics, 27 (5), 1989–1994.
  • Wei-Ping, N., Wei-Dong, Y., and Hui, B., et al. 2008. An algorithm of InSAR flat earth removal based on orbit parameters. China Society of Image and Graphics; Chinese Society for Stereology; Lanzhou Jiaotong University.
  • Wen, B.Y., Li, Z.L., Zhou, H., et al. 2009. Sea surface currents detection at the Eastern China sea HF ground wave radar OSMAR-S. Acta Electronica Sinica, 37 (12), 2778–2782.
  • Yi-Jun, H., Xiao-Bo, Y., Na, Y., and Baochang L., 2020. Progress in sea surface current retrieval from spaceborne SAR measurements. Journal of Nanjing University of Information Science & Technology, 12 (2), 181–190.
  • Yong, D., 1999. Principle of the extraction of sea surface current by single station HF ground wave radar. Journal of Qingdao University, (2), 19–24. doi:10.16441/j.cnki.hdxb.1999.02.004
  • Yuan, X., et al. 2021a. Observing sea surface current by Gaofen-3 satellite along-track interferometric SAR experimental mode. IEEE Journal of Selected Topics in Applied Earth Observations & Remote Sensing, 14, 7762–7770. doi:10.1109/JSTARS.2021.3099105
  • Yuan, X., et al. 2021b. Observing sea surface current by gaofen-3 satellite along-track interferometric SAR experimental mode. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 99, 1–1. doi:10.1109/JSTARS.2021.3099105
  • Yun-Kai, D., et al. 2020. Forthcoming spaceborne SAR development. Journal of Radars, 9 (1), 1–33.
  • Yun-Kai, D., Feng-Jun, Z., and Yu, W., 2012. Brief analysis on the development and application of spaceborne SAR. Journal of Radars, 1 (1), 1–10.
  • Zheng-Ming, Q., et al. 2021. Development status and application of current meters. Ocean Development and Management, 38 (12), 85–92.

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