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Original Articles

Analysis of a possible sea floor strain measurement system

Pages 385-398 | Published online: 10 Jan 2009

Keep up to date with the latest research on this topic with citation updates for this article.

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Yingcai Kuang, Zhiping Lu, Fangchao Wang, Kaichun Yang & Linyang Li. (2023) A Nonlinear Gauss-Helmert Model and Its Robust Solution for Seafloor Control Point Positioning. Marine Geodesy 46:1, pages 16-42.
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AaronD. Sweeney, C. David Chadwell, JohnA. Hildebrand & FredN. Spiess. (2005) Centimeter-Level Positioning of Seafloor Acoustic Transponders from a Deeply-Towed Interrogator. Marine Geodesy 28:1, pages 39-70.
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Articles from other publishers (33)

Shuqiang Xue, Baojin Li, Zhen Xiao, Yue Sun & Jingsen Li. (2023) Centimeter-level-precision seafloor geodetic positioning model with self-structured empirical sound speed profile. Satellite Navigation 4:1.
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Jinye Ma, Yanxiong Liu, Jianhu Zhao & Shouchuan Fang. (2023) The efficient self-checking method for the seafloor geodetic network. Applied Ocean Research 140, pages 103737.
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Yusuke Yokota, Masata Kaneda, Takenori Hashimoto, Shusaku Yamaura, Kenji Kouno & Yoshiaki Hirakawa. (2023) Experimental verification of seafloor crustal deformation observations by UAV-based GNSS-A. Scientific Reports 13:1.
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Shuang Zhao, Yusuke Yokota, Zhenjie Wang & Shuqiang Xue. (2023) Investigation on GNSS-A precise point positioning based on adaptively robust filter considering the horizontal heterogeneity of sound speed structure. Investigation on GNSS-A precise point positioning based on adaptively robust filter considering the horizontal heterogeneity of sound speed structure.
Menghao Li, Yang Liu, Yanxiong Liu, Guanxu Chen, Qiuhua Tang, Yunfeng Han & Yuanlan Wen. (2022) Simulative Evaluation of the Underwater Geodetic Network Configuration on Kinematic Positioning Performance. Remote Sensing 14:8, pages 1939.
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Horng‐Yue Chen, Ya‐Ju Hsu, Ryoya Ikuta, Hsin Tung, Chi‐Hsien Tang, Chin‐Shang Ku, Hsuan‐Han Su, Pei‐Ru Jian, Masataka Ando & Toshiaki Tsujii. (2022) Strain Partitioning in the Southern Ryukyu Margin Revealed by Seafloor Geodetic and Seismological Observations. Geophysical Research Letters 49:6.
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Yusuke Yokota, Tadashi Ishikawa, Shun-ichi Watanabe & Yuto Nakamura. (2021) Crustal deformation detection capability of the GNSS-A seafloor geodetic observation array (SGO-A), provided by Japan Coast Guard. Progress in Earth and Planetary Science 8:1.
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Masayuki FUJITA, Yoshihiro MATSUMOTO, Mariko SATO, Tadashi ISHIKAWA, Shun-ichi WATANABE & Yusuke YOKOTA. (2021) Establishment of Regular GNSS-A Seafloor Geodetic Observation Technique and Its Contribution to Seismology定常的なGNSS-A海底地殻変動観測の確立と地震学への貢献. Zisin (Journal of the Seismological Society of Japan. 2nd ser.) 74:0, pages 55-65.
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Shuang Zhao, Zhenjie Wang, Zhixi Nie, Kaifei He & Ning Ding. (2021) Investigation on total adjustment of the transducer and seafloor transponder for GNSS/Acoustic precise underwater point positioning. Ocean Engineering 221, pages 108533.
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Shuang Zhao, Zhenjie Wang, Kaifei He, Zhixi Nie, Huimin Liu & Ning Ding. (2020) Investigation on Stochastic Model Refinement for Precise Underwater Positioning. IEEE Journal of Oceanic Engineering 45:4, pages 1482-1496.
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Zhenjie Wang, Shuang Zhao, Shengyue Ji, Kaifei He, Zhixi Nie, Huimin Liu & Rui Shan. (2019) Real-time stochastic model for precise underwater positioning. Applied Acoustics 150, pages 36-43.
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Wenzhou Sun, Xiaodong Yin, Qiang Liu & Zhuoxi Ma. (2019) A new method for positioning a single transponder without sound velocity profile. IOP Conference Series: Earth and Environmental Science 237, pages 032028.
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Yingcai Kuang, Zhiping Lǚ, Junting Wang & Fangchao Wang. 2019. China Satellite Navigation Conference (CSNC) 2019 Proceedings. China Satellite Navigation Conference (CSNC) 2019 Proceedings 479 489 .
Shuang Zhao, Zhenjie Wang, Kaifei He & Ning Ding. (2018) Investigation on underwater positioning stochastic model based on acoustic ray incidence angle. Applied Ocean Research 77, pages 69-77.
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Hsin-Hung Chen. (2014) Travel-time approximation of acoustic ranging in GPS/Acoustic seafloor geodesy. Ocean Engineering 84, pages 133-144.
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Takuya NishimuraMariko SatoTakeshi Sagiya. (2014) Global Positioning System (GPS) and GPS-Acoustic Observations: Insight into Slip Along the Subduction Zones Around Japan. Annual Review of Earth and Planetary Sciences 42:1, pages 653-674.
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M. Sato, M. Fujita, Y. Matsumoto, H. Saito, T. Ishikawa & T. Asakura. (2013) Improvement of GPS/acoustic seafloor positioning precision through controlling the ship?s track line. Journal of Geodesy 87:9, pages 825-842.
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Hsin-Hung Chen, Chau-Chang Wang, Wen-Ning Chuang, Bi-Hua Lin, Kun-Hung Li & Jia-De Su. (2013) Linear and bilinear approximations of sound speed profiles in GPS/Acoustic seafloor geodesy. Linear and bilinear approximations of sound speed profiles in GPS/Acoustic seafloor geodesy.
Hiromi Fujimoto, Motoyuki Kido, Yukihito Osada, Keiichi Tadokoro, Takashi Okuda, Yoshihiro Matsumoto & Kozue Kurihara. 2011. Accretionary Prisms and Convergent Margin Tectonics in the Northwest Pacific Basin. Accretionary Prisms and Convergent Margin Tectonics in the Northwest Pacific Basin 263 272 .
Benjamin A. Brooks, James H. Foster, Jeffrey J. McGuire & Mark Behn. 2011. Extreme Environmental Events. Extreme Environmental Events 889 907 .
Benjamin A. Brooks, James H. Foster, Jeffrey J. McGuire & Mark Behn. 2009. Encyclopedia of Complexity and Systems Science. Encyclopedia of Complexity and Systems Science 8850 8869 .
Motoyuki Kido. (2007) Detecting horizontal gradient of sound speed in ocean. Earth, Planets and Space 59:8, pages e33-e36.
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Motoyuki Kido, Hiromi Fujimoto, Satoshi Miura, Yukihito Osada, Kentaro Tsuka & Takao Tabei. (2006) Seafloor displacement at Kumano-nada caused by the 2004 off Kii Peninsula earthquakes, detected through repeated GPS/Acoustic surveys. Earth, Planets and Space 58:7, pages 911-915.
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Peiliang Xu, Masataka Ando & Keiichi Tadokoro. (2014) Precise, three-dimensional seafloor geodetic deformation measurements using difference techniques. Earth, Planets and Space 57:9, pages 795-808.
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N.H. Kussat, C.D. Chadwell & R. Zimmerman. (2005) Absolute Positioning of an Autonomous Underwater Vehicle Using GPS and Acoustic Measurements. IEEE Journal of Oceanic Engineering 30:1, pages 153-164.
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M. Mochizuki, M. Fujita, M. Sato, Z. Yoshida, T. Yabuki & A. Asada. (2004) Routine seafloor geodetic observation around Japan. Routine seafloor geodetic observation around Japan.
M. Mochizuki, M. Fujita, M. Sato, Z. Yoshida, T. Yabuki & A. Asada. (2004) Trials of seafloor geodetic monitoring around Japan. Trials of seafloor geodetic monitoring around Japan.
Fred N Spiess, C.David Chadwell, John A Hildebrand, Larry E Young, George H PurcellJr.Jr. & Herb Dragert. (1998) Precise GPS/Acoustic positioning of seafloor reference points for tectonic studies. Physics of the Earth and Planetary Interiors 108:2, pages 101-112.
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C. D. Chadwell, F. N. Spiess, J. A. Hildebrand, L. E. Young, G. H. Purcell & H. Dragert. 1997. Gravity, Geoid and Marine Geodesy. Gravity, Geoid and Marine Geodesy 682 689 .
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