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Original Articles

Oceanwide Precise Determination of Sea Surface Height from In-Situ Measurements on Cargo Ships

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Pages 77-96 | Received 15 Mar 2013, Accepted 04 Sep 2013, Published online: 04 Mar 2014

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Read on this site (3)

Pascal Bonnefond, Olivier. Laurain, Pierre Exertier, Michel Calzas, Thierry Guinle & Nicolas Picot. (2022) Validating a New GNSS-Based Sea Level Instrument (CalNaGeo) at Senetosa Cape. Marine Geodesy 45:2, pages 121-150.
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Ole Roggenbuck & Jörg Reinking. (2019) Sea Surface Heights Retrieval from Ship-Based Measurements Assisted by GNSS Signal Reflections. Marine Geodesy 42:1, pages 1-24.
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Maaria Nordman, Jaakko Kuokkanen, Mirjam Bilker-Koivula, Hannu Koivula, Pasi Häkli & Sonja Lahtinen. (2018) Geoid Validation on the Baltic Sea Using Ship-borne GNSS Data. Marine Geodesy 41:5, pages 457-476.
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Articles from other publishers (12)

Sander Varbla & Artu Ellmann. (2023) Iterative data assimilation approach for the refinement of marine geoid models using sea surface height and dynamic topography datasets. Journal of Geodesy 97:3.
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Sander Varbla, Aive Liibusk & Artu Ellmann. (2022) Shipborne GNSS-Determined Sea Surface Heights Using Geoid Model and Realistic Dynamic Topography. Remote Sensing 14:10, pages 2368.
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Sander Varbla, Jonas Ågren, Artu Ellmann & Markku Poutanen. (2022) Treatment of Tide Gauge Time Series and Marine GNSS Measurements for Vertical Land Motion with Relevance to the Implementation of the Baltic Sea Chart Datum 2000. Remote Sensing 14:4, pages 920.
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M. J. Hossen, Iyan E. Mulia, David Mencin & Anne F. Sheehan. (2021) Data Assimilation for Tsunami Forecast With Ship‐Borne GNSS Data in the Cascadia Subduction Zone. Earth and Space Science 8:3.
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Daisuke Inazu, Tsuyoshi Ikeya, Toshio Iseki & Takuji Waseda. (2020) Extracting clearer tsunami currents from shipborne Automatic Identification System data using ship yaw and equation of ship response. Earth, Planets and Space 72:1.
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Fan Gao, Tianhe Xu, Nazi Wang, Yunqiao He & Xiaowen Luo. (2020) A shipborne experiment using a dual-antenna reflectometry system for GPS/BDS code delay measurements. Journal of Geodesy 94:9.
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Iyan E. Mulia & Kenji Satake. (2020) Developments of Tsunami Observing Systems in Japan. Frontiers in Earth Science 8.
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A. Maximilian Semmling, Anja Rosel, Dmitry V. Divine, Sebastian Gerland, Georges Stienne, Serge Reboul, Marcel Ludwig, Jens Wickert & Harald Schuh. (2019) Sea-Ice Concentration Derived From GNSS Reflection Measurements in Fram Strait. IEEE Transactions on Geoscience and Remote Sensing 57:12, pages 10350-10361.
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Ole Roggenbuck, Jörg Reinking & Tomke Lambertus. (2019) Determination of Significant Wave Heights Using Damping Coefficients of Attenuated GNSS SNR Data from Static and Kinematic Observations. Remote Sensing 11:4, pages 409.
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Nigel T. Penna, Miguel A. Morales Maqueda, Ian Martin, Jing Guo & Peter R. Foden. (2018) Sea Surface Height Measurement Using a GNSS Wave Glider. Geophysical Research Letters 45:11, pages 5609-5616.
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Iyan E. Mulia, Daisuke Inazu, Takuji Waseda & Aditya Riadi Gusman. (2017) Preparing for the Future Nankai Trough Tsunami: A Data Assimilation and Inversion Analysis From Various Observational Systems. Journal of Geophysical Research: Oceans 122:10, pages 7924-7937.
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Daisuke Inazu, Takuji Waseda, Toshiyuki Hibiya & Yusaku Ohta. (2016) Assessment of GNSS-based height data of multiple ships for measuring and forecasting great tsunamis. Geoscience Letters 3:1.
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