Precise Positioning Method for Seafloor Geodetic Stations Based on the Temporal Variation of Sound Speed Structure

被引:1
|
作者
Shuang ZHAO [1 ]
Zhenjie WANG [2 ]
Zhixi NIE [2 ]
Kaifei HE [2 ]
Huimin LIU [3 ]
Zhen SUN [2 ]
机构
[1] Chinese Academy of Surveying and Mapping
[2] College of Oceanography and Space Informatics,China University of Petroleum(East China)
[3] Qingdao Institute of Marine Geology,China Geological Survey
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
P228.4 [全球定位系统(GPS)]; P229 [海洋测量学];
学科分类号
081105 ; 0818 ; 081802 ;
摘要
At present, GNSS-Acoustic(GNSS-A) combined technology is widely used in positioning for seafloor geodetic stations. Based on Sound Velocity Profiles(SVPs) data, the equal gradient acoustic ray-tracing method is applied in high-precision position inversion. However, because of the discreteness of the SVPs used in the forementioned method, it ignores the continuous variation of sound velocity structure in time domain, which worsens the positioning accuracy. In this study, the time-domain variation of Sound Speed Structure(SSS) has been considered, and the cubic B-spline function is applied to characterize the perturbed sound velocity. Based on the ray-tracing theory, an inversion model of “stepwise iteration & progressive corrections” for both positioning and sound speed information is proposed, which conducts the gradual correction of seafloor geodetic station coordinates and disturbed sound velocity. The practical data was used to test the effectiveness of our method. The results show that the Root Mean Square(RMS) errors of the residual values of the traditional methods without sound velocity correction, based on quadratic polynomial correction and based on cubic B-spline function correction are 1.43 ms, 0.44 ms and 0.21 ms, respectively. The inversion model with sound velocity correction can effectively eliminate the systematic error caused by the change of SSS, and significantly improve the positioning accuracy of the seafloor geodetic stations.
引用
收藏
页码:81 / 92
页数:12
相关论文
共 50 条
  • [31] Two-Step Correction Based on In-Situ Sound Speed Measurements for USBL Precise Real-Time Positioning
    Zhao, Shuang
    Liu, Huimin
    Xue, Shuqiang
    Wang, Zhenjie
    Xiao, Zhen
    REMOTE SENSING, 2023, 15 (20)
  • [32] Precise Underwater Autonomous Vehicle Localization and Tracking in Unknown Areas with Sound Speed Variation
    Liang, Xiaolin
    Liu, Ning
    Yang, Feng
    Ding, Lianghui
    Qian, Liang
    PROCEEDINGS OF THE 2013 INTERNATIONAL TECHNICAL MEETING OF THE INSTITUTE OF NAVIGATION, 2013, : 386 - 391
  • [33] GNSS Precise Kinematic Positioning for Multiple Kinematic Stations Based on A Priori Distance Constraints
    He, Kaifei
    Xu, Tianhe
    Forste, Christoph
    Petrovic, Svetozar
    Barthelmes, Franz
    Jiang, Nan
    Flechtner, Frank
    SENSORS, 2016, 16 (04):
  • [34] A precise underwater positioning method by considering the location difference of transmitting and receiving sound waves
    Li, Tie
    Zhao, Jianhu
    Ma, Jinye
    OCEAN ENGINEERING, 2022, 247
  • [35] GNSS-A Geodetic Positioning with Global Gridded Marine Environment Dataset Replacing In-Field Sound Speed Measurement
    Li, Baojin
    Xue, Shuqiang
    Zhao, Shuang
    Xiao, Zhen
    Liu, Yixu
    Yang, Cheng
    MARINE GEODESY, 2024,
  • [36] Predicting the Sound Speed of Seafloor Sediments in the East China Sea Based on an XGBoost Algorithm
    Chen, Mujun
    Meng, Xiangmei
    Kan, Guangming
    Wang, Jingqiang
    Li, Guanbao
    Liu, Baohua
    Liu, Chenguang
    Liu, Yanguang
    Liu, Yuanxu
    Lu, Junjie
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2022, 10 (10)
  • [37] An Effective Robust Total Least-Squares Solution Based on "Total Residuals" for Seafloor Geodetic Control Point Positioning
    Lv, Zhipeng
    Xiao, Guorui
    REMOTE SENSING, 2025, 17 (02)
  • [38] Positioning method using time difference measurements from multi-station based on precise distance information of observation stations
    Dend, Xingsong
    Qi, Liang
    Zhu, Yuanjiang
    Yang, Fan
    Jiang, Zhichen
    Liu, Zhiyong
    Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics, 2024, 46 (08): : 2592 - 2599
  • [39] Seafloor sound-speed profile and interface dip angle characterization by the image source method
    Pinson, S.
    Holland, C. W.
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2014, 136 (02): : 596 - 603
  • [40] Seafloor sound-speed profile and interface dip angle characterization by the image source method
    Pinson, S. (samuelpinson@yahoo.fr), 1600, Acoustical Society of America (136):