Acta Geodaetica et Cartographica Sinica ›› 2017, Vol. 46 ›› Issue (10): 1778-1785.doi: 10.11947/j.AGCS.2017.20170371
Previous Articles Next Articles
BAO Jingyang1, XU Jun1,2, YU Caixia1
Received:2017-06-29
Revised:2017-07-19
Online:2017-10-20
Published:2017-10-26
Supported by:CLC Number:
BAO Jingyang, XU Jun, YU Caixia. Technical Progress and Development Directions of Oceanic Spatial Information Datum[J]. Acta Geodaetica et Cartographica Sinica, 2017, 46(10): 1778-1785.
| [1] 刘雁春, 肖付民, 暴景阳, 等. 海道测量学概论[M]. 北京:测绘出版社, 2006. LIU Yanchun, XIAO Fumin, BAO Jingyang, et al. Introduction for Hydrography[M]. Beijing:Surveying and Mapping Press, 2006. [2] 翟国君, 黄谟涛, 暴景阳. 海洋测绘基准的需求及现状[J]. 海洋测绘, 2003, 23(4):54-58. ZHAI Guojun, HUANG Motao, BAO Jingyang. The Requirement and Status of Hydrographic Datum[J]. Hydrographic Surveying and Charting, 2003, 23(4):54-58. [3] 阳凡林, 暴景阳, 胡兴树. 水下地形测量[M]. 武汉:武汉大学出版社, 2017. YANG Fanlin, BAO Jingyang, HU Xingshu. Oceanic Surveying and Mapping[M]. Wuhan:Wuhan University Press, 2017. [4] 林长川. SA取消前后RBN-DGPS系统精度评估与分析[J]. 中国航海, 2001(2):20-26. LIN Changchuan. Evaluation and Analysis of the Precision of RBN-DGPS before and after Canceling SA[J]. Navigation of China, 2001(2):20-26. [5] 杨元喜, 徐天河, 薛树强. 我国海洋大地测量基准与海洋导航技术研究进展与展望[J]. 测绘学报, 2017, 46(1):1-8. DOI:10.11947/j.AGCS.2017.20160519. YANG Yuanxi, XU Tianhe, XUE Shuqiang. Progresses and Prospects in Developing Marine Geodetic Datum and Marine Navigation of China[J]. Acta Geodaetica et Cartographica Sinica, 2017, 46(1):1-8. DOI:10.11947/j.AGCS.2017.20160519. [6] 方国洪, 郑文振, 陈宗镛, 等. 潮汐和潮流的调和分析和预报[M]. 北京:海洋出版社, 1986. FANG Guohong, ZHENG Wenzhen, CHEN Zongyong, et al. Forecastand Harmonic Analysis of Tide and Tide Current[M]. Beijing:Maritime Press, 1986. [7] MARTIN R J, BROADBENT G J. Chart Datum for Hydrography[J]. The Hydrographic Journal, 2004(112):9-14. [8] 暴景阳, 黄辰虎, 刘雁春, 等. 海图深度基准面的算法研究[J]. 海洋测绘, 2003, 23(1):8-12. BAO Jingyang, HUANG Chenhu, LIU Yanchun, et al. Research on the Algorithm for Chart Datum[J]. Hydrographic Surveying and Charting, 2003, 23(1):8-12. [9] 暴景阳, 张明亮, 唐岩, 等. 理论最低潮面定义和算法的应用问题分析[J], 海洋测绘, 2009, 29(4):1-4. BAO Jingyang, ZHANG Mingliang, TANG Yan, et al. The Analysis of the Application of Definition and Algorithms of Lowest Normal Low Water[J]. Hydrographic Surveying and Charting, 2009, 29(4):1-4. [10] 暴景阳, 章传银. 关于海洋垂直基准的讨论[J]. 测绘通报, 2001(6):10-11, 26. BAO Jingyang, ZHANG Chuanyin. On the Sea and Ocean Vertical Datum[J]. Bulletin of Surveying and Mapping, 2001(6):10-11, 26. [11] 暴景阳. 海洋深度基准面的建立、标定与维持[J]. 海洋测绘, 2000, 20(4):4-8. BAO Jingyang. Constructing, Calibrating and Maintaining Oceanic Depth Datum[J]. Hydrographic Surveying and Charting, 2000, 20(4):4-8. [12] 暴景阳. 海洋测绘垂直基准综论[J]. 海洋测绘, 2009, 29(2):70-73, 77. BAO Jingyang. On the Study of Vertical Datum for Hydrography and Cartography[J]. Hydrographic Surveying and Charting, 2009, 29(2):70-73, 77. [13] 暴景阳, 许军, 崔杨. 海域无缝垂直基准面表征和维持体系论证[J]. 海洋测绘, 2013, 33(2):1-5. BAO Jingyang, XU Jun, CUI Yang. Expression and Maintenance of Seamless Vertical Datum for Hydrography[J]. Hydrographic Surveying and Charting, 2013, 33(2):1-5. [14] 暴景阳, 翟国君, 许军. 海洋垂直基准及转换的技术途径分析[J]. 武汉大学学报(信息科学版), 2016, 41(1):52-57. BAO Jingyang, ZHAI Guojun, XU Jun. Vertical Datums and Their Transformation Approaches for Hydrography[J]. Geomatics and Information Science of Wuhan University, 2016, 41(1):52-57. [15] NOAA NOS CO-OPS. Computational Techniques for Tidal Datums Handbook[S]. NOAA Special Publication, NOS CO-OPS 2, Silver Spring, MD:NOAA National Ocean Service, 2003. [16] NOAA NOS CO-OPS. Tidal Datums and Their Applications[R]. NOAA Special Publication, NOS CO-OPS 1, Silver Spring, MD:NOAA, 2001. [17] YANG Zizang, MYERS E P, JEONG I, et al. V Datum for the Coastal Waters from the Florida Shelf to the South Atlantic Bight:Tidal Datums, Marine Grids, and Sea Surface Topography[R].[s.L.]:NOAA, 2012. [18] International Federation of Surveyors. FIG Guide on the Development of a Vertical Reference Surface for Hydrography[R]. Denmark:The International Federation of Surveyors (FIG), 2006. [19] ANDREASEN C. Vertical Datum Issues for Data Continuity from the Land to the Seafloor[C]//Proceedings of the Canadian Hydrographic Conference and National Surveyors Conference. Victoria, BC:[s.n.], 2008:1-10. [20] WELLS D, KLEUSBERG A, VANICEK P. A Seamless Vertical-Reference Surface for Acquisition, Management and Display (ECDIS) of Hydrographic Data[R]. Fredericton, New Brunswick Canada:University of New Brunswick, 1995. [21] EL-RABBANY A. Development of a Seamless Vertical Reference System:Challenges and Opportunities[R]. Paris, France:FIG, 2003. [22] ADAMS R. Seamless Data and Vertical Datums-reconciling Chart Datum with a Global Reference Frame[J]. The Hydrographic Journal, 2004, 113:9-14. [23] 章传银. 测绘垂直基准相互转换与统一技术[C]//地理空间信息技术与应用——中国科协2002年学术年会测绘论文集. 北京:中国测绘学会, 2002. ZHANG Chuanyin. Technology of Transformation and Unification for the Vertical Reference Datum[C]//China Association for Science and Technology 14 Session:Ocean Development and Sustainable Development. Beijing:Chinese Society for Geodesy Photogrammetry and Cartography, 2002. [24] 孙翠羽. 海洋无缝垂直基准面建立方法研究——以渤海海域为例[D]. 青岛:山东科技大学, 2011. SUN Cuiyu. Study on the Method of Developing a Seamless Vertical Reference:Taking Bohai Sea as a Case Study[D]. Qingdao:Shandong University of Science and Technology, 2011. [25] 王骥, 刘克修. 关于海图深度基准面计算方法的若干问题[J]. 海洋测绘, 2002, 22(4):10-13. WANG Ji, LIU Kexiu. Some Problems in Calculating the Chart Datum in Accordance with the National Specifications and Standards[J]. Hydrographic Surveying and Charting, 2002, 22(4):10-13. [26] 刘克修, 王骥. 关于工程潮位计算的若干问题[J]. 海洋技术, 1999, 18(4):46-55. LIU Kexiu, WANG Ji. Problems about Calculating Engineering Tide Level[J]. Ocean Technology, 1999, 18(4):46-55. [27] 暴景阳, 刘雁春, 晁定波, 等. 中国沿岸主要验潮站海图深度基准面的计算与分析[J]. 武汉大学学报(信息科学版), 2006, 31(3):224-228. BAO Jingyang, LIU Yanchun, CHAO Dingbo, et al. Computations and Analyses of Chart Datum to Coastal Tide Gauges of China[J]. Geomatics and Information Science of Wuhan University, 2006, 31(3):224-228. [28] 暴景阳, 许军. 中国沿岸验潮站潮汐调和常数的精度评估[J]. 海洋测绘, 2013, 33(1):1-4. BAO Jingyang, XU Jun. The Accuracy Evaluation of Harmonic Constants for Long Term Tidal Stations Along the Coast of China[J]. Hydrographic Surveying and Charting, 2013, 33(1):1-4. [29] 暴景阳, 许军, 崔杨. 调和常数及深度基准面的变化与历元订正[J]. 海洋测绘, 2013, 33(3):1-5. BAO Jingyang, XU Jun, CUI Yang. The Variation and Epoch Correction of Harmonic Constants and Chart Datum[J]. Hydrographic Surveying and Charting, 2013, 33(3):1-5. [30] 暴景阳, 许军, 冯雷, 等. 深度基准传递方法的比较与验潮站网基准的综合确定[J]. 海洋测绘, 2013, 33(5):1-6. BAO Jingyang, XU Jun, FENG Lei, et al. The Comparison of Chart Datum Transfer Algorithms and Synthetical Determination for Tidal Station Network Datum[J]. Hydrographic Surveying and Charting, 2013, 33(5):1-6. [31] 张锦文, 杜碧兰. 中国黄海沿岸潮差的显著增大趋势[J]. 海洋通报, 2000, 19(1):1-9. ZHANG Jinwen, DU Bilan. The Trend of Tidal Range Enlarging along the Coast of the Yellow Sea of China[J]. Marine Science Bulletin, 2000, 19(1):1-9. [32] 暴景阳, 许军. 卫星测高数据的潮汐提取与建模应用[M]. 北京:测绘出版社, 2013. BAO Jingyang, XU Jun. Tide Analysis from Altimeter Data and the Establishment and Application of Tide Model[M]. Beijing:Surveying and Mapping Press, 2013. [33] 暴景阳, 许军. 海道测量水位控制的技术体系及标准更新[J]. 海洋测绘, 2016, 36(6):1-6. BAO Jingyang, XU Jun. Technical Framwork and Specification Revision for Water Level Control in Hydrographic Survey[J]. Hydrographic Surveying and Charting, 2016, 36(6):1-6. [34] 暴景阳, 刘雁春. 海道测量水位控制方法研究[J]. 测绘科学, 2006, 31(6):49-51. BAO Jingyang, LIU Yanchun. A Study of Water Level Control for Hydrographic Survey[J]. Science of Surveying and Mapping, 2006, 31(6):49-51. [35] 许军, 暴景阳, 于彩霞. 水位改正中的基准面空间内插及其误差约束[J]. 海洋测绘, 2016, 36(6):11-14. XU Jun, BAO Jingyang, YU Caixia. Datum Interpolation in Water Level Correction and Technique for Restricting Its Error[J]. Hydrographic Surveying and Charting, 2016, 36(6):11-14. [36] XU Jun, BAO Jingyang, ZHANG Chuanyin, et al. Tide Model CST1 of China and Its Application for the Water Level Reducer of Bathymetric Data[J]. Marine Geodesy, 2017, 40(2-3):74-86. [37] 李建成, 姜卫平, 章磊. 联合多种测高数据建立高分辨率中国海平均海面高模型[J]. 武汉大学学报(信息科学版), 2001, 26(1):40-45. LI Jiancheng, JIANG Weiping, ZHANG Lei. High Resolution Mean Sea Surface over China Sea Derived from Multi-satellite Altimeter Data[J]. Geomatics and Information Science of Wuhan University, 2001, 26(1):40-45. [38] 姜卫平, 李建成, 王正涛. 联合多种测高数据确定全球平均海面WHU2000[J]. 科学通报, 2002, 47(15):1187-1191. JIANG Weiping, LI Jiancheng, WANG Zhengtao. Determination of Global Mean Sea Surface WHU2000 Using Multi-satellite Altimetric Data[J]. Chinese Science Bulletin, 2002, 47(19):1664-1668. [39] 方国洪, 魏泽勋, 方越, 等. 依据海洋环流模式和大地水准测量获取的中国近海平均海面高度分布[J]. 科学通报, 2001, 46(18):1572-1575. FANG Guohong, WEI Zexun, FANG Yue, et al. Mean Sea Surface Heights of the South and East China Seas from Ocean Circulation Model and Geodetic Leveling[J]. Chinese Science Bulletin, 2002, 47(4):326-329. [40] 焦文海, 魏子卿, 马欣, 等. 1985国家高程基准相对于大地水准面的垂直偏差[J]. 测绘学报, 2002, 31(3):196-200. JIAO Wenhai, WEI Ziqing, MA Xin, et al. The Origin Vertical Shift of National Height Datum 1985 with Respect to the Geoidal Surface[J]. Acta Geodaetica et Cartographica Sinica, 2002, 31(3):196-200. [41] 邓凯亮, 暴景阳, 章传银, 等. 联合多代卫星测高数据确定中国近海稳态海面地形模型[J]. 测绘学报, 2009, 38(2):114-119. DENG Kailiang, BAO Jingyang, ZHANG Chuanyin, et al. The Determination of Quasi-stationary Sea Surface Topography over China Sea by Using Multi-altimeter Data[J]. Acta Geodaetica et Cartographica Sinica, 2009, 38(2):114-119. [42] 章传银, 李建成, 晁定波. 联合卫星测高和海洋物理数据计算近海稳态海面地形[J]. 武汉测绘科技大学学报, 2000, 25(6):500-504. ZHANG Chuanyin, LI Jiancheng, CHAO Dingbo. Calculating Stationary Sea Surface Topography of Coastal Area with Altimeter and Oceanographic Data[J]. Journal of Wuhan Technical University of Surveying and Mapping, 2000, 25(6):500-504. [43] 张子占, 陆洋. GRACE卫星资料确定的稳态海面地形及其谱特征[J]. 中国科学D辑地球科学, 2005, 35(2):176-183. ZHANG Zizhan, LU Yang. Spectral Analysis of Quasi-stationary Sea Surface Topography from GRACE Mission[J]. Science in China Series D:Earth Sciences, 2005, 48(11):2040-2048. [44] 王正涛, 党亚民, 姜卫平, 等. 联合卫星重力和卫星测高数据确定稳态海洋动力地形[J]. 测绘科学, 2006, 31(6):40-42. WANG Zhengtao, DANG Yamin, JIANG Weiping, et al. Combining Altimeter and Gravity Satellite to Compute Quasi-stable Dynamic Ocean Topography[J]. Science of Surveying and Mapping, 2006, 31(6):40-42. [45] 赵建虎, 张红梅, CLARKE J E H. 局部无缝垂直参考基准面的建立方法研究[J]. 武汉大学学报(信息科学版), 2006, 31(5):448-450. ZHAO Jianhu, ZHANG Hongmei, CLARKE J E H. Establishment of Local Seamless Vertical Datum[J]. Geomatics and Information Science of Wuhan University, 2006, 31(5):448-450. [46] 柯灏, 李斐, 赵建虎, 等. 利用潮汐性质相似性的长江口水域深度基准面传递精度研究[J]. 武汉大学学报(信息科学版), 2015, 40(6):767-771. KE Hao, LI Fei, ZHAO Jianhu, et al. A Chart Datum Transfer Precision Model in the Yangtze River Estuary Based on Tidal Nature Similarity[J]. Geomatics and Information Science of Wuhan University, 2015, 40(6):767-771. [47] 陈楠. 福建半日潮区理论深度基准面值回归方程的建立[J]. 测绘通报, 1999(9):28-29. DOI:10.3969/j.issn.0494-0911.1999.09.009. CHEN Nan. Construction of Regression Model of Lowest Low Water around Fujian Semidiurnal Tide Area[J]. Bulletin of Surveying and Mapping, 1999(9):28-29. DOI:10.3969/j.issn.0494-0911.1999.09.009. [48] 张安民. e-航海中的动态信息服务若干关键技术研究[D]. 武汉:武汉大学, 2013. ZHANG Anmin. Research on Some Key Techniques of Dynamic Information Servicers in e-navigation[D]. Wuhan:Wuhan University, 2013. |
| [1] | Chuanyin ZHANG, Tao JIANG, Baogui KE. Theoretical foundation of gravity field and improvement of classical concepts for geodetic height datum unified in the terrestrial reference system [J]. Acta Geodaetica et Cartographica Sinica, 2025, 54(9): 1561-1571. |
| [2] | Yijie ZHAO, Junting WANG, Tianhe XU, Jianxu SHU, Yangfan LIU. Correction method for time-varying sound speed errors in underwater geodetic datum positioning [J]. Acta Geodaetica et Cartographica Sinica, 2025, 54(8): 1452-1463. |
| [3] | Qiliang LIU, Jie YANG, Xiancheng MAO, Zhankun LIU, Min DENG. Yang Chizhong filtering and estimation methods for spatial data interpolation [J]. Acta Geodaetica et Cartographica Sinica, 2025, 54(8): 1501-1517. |
| [4] | Zhaofeng DU, Guopeng LI, Zhanke LIU, Xiaming SHANG, Shengjun KANG, Xiaoqiang WANG. Comprehensive analysis of multiple monitoring methods in main subsidence areas [J]. Acta Geodaetica et Cartographica Sinica, 2025, 54(3): 481-492. |
| [5] | Deren LI, Mi WANG, Wenbin SHEN, Qingyun DU, Shuo WANG. On the development of surveying and mapping in the era of artificial intelligence [J]. Acta Geodaetica et Cartographica Sinica, 2025, 54(12): 2107-2115. |
| [6] | Xiaolong WANG, Zhuo WANG, Jingzhong LI, Haowen YAN. Translation of spatial direction relationship for We-map making [J]. Acta Geodaetica et Cartographica Sinica, 2025, 54(11): 2040-2051. |
| [7] | Liming JIANG, Yi SHAO, Zhiwei ZHOU, Peifeng MA, Teng WANG. A review of intelligent InSAR data processing: recent advancements, challenges and prospects [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(6): 1037-1056. |
| [8] | Hao XU, Qin ZHANG, Li WANG, Bao SHU, Yuan DU, Guanwen HUANG. Intelligent site selection method for UAV-dropped GNSS landslide monitoring equipment [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(6): 1140-1153. |
| [9] | Weiying XIE, Zixuan WANG, Yunsong LI. Efficient-communication on-orbit distributed hyperspectral image processing [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(4): 589-598. |
| [10] | Mi WANG, Beibei GUO, Yingdong PI, Zhiqi ZHANG, Jing XIAO, Rongfan DAI, Shao XIANG. On-orbit processing technology and verification of Luojia-3 01 satellite [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(4): 599-609. |
| [11] | Wei LIU, Songlin LIU, Zibo GUO, Kai LIU, Lizhe ZHANG. Design of optical remote sensing satellite onboard processing system based on model definition [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(4): 689-699. |
| [12] | HU Chao, WANG Qianxin. GNSS ultra-rapid orbit and clock offset estimation method with the aid of the constraint of BDS-3 onboard clock [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(3): 413-424. |
| [13] | Piao LUO, Junkui XU, Fang WU, Yakun LÜ, Qingwen ZHUANG. A generative neural network method for road simplification [J]. Acta Geodaetica et Cartographica Sinica, 2024, 53(10): 2007-2020. |
| [14] | DANG Yamin, JIANG Tao, YANG Yuanxi, SUN Heping, JIANG Weiping, ZHU Jianjun, XUE Shuqiang, ZHANG Xiaohong, YU Baoguo, LUO Zhicai, LI Xingxing, XIAO Yun, ZHANG Chuanyin, ZHANG Baocheng, LI Zishen, FENG Wei, REN Xia, WANG Hu. Research progress of geodesy in China (2019—2023) [J]. Acta Geodaetica et Cartographica Sinica, 2023, 52(9): 1419-1436. |
| [15] | ZHANG Lifu, WANG Sa, ZHANG Yan, YUAN Deshuai, SONG Ruoxi, QI Wenchao, QU Liang, LU Zhiyong, TONG Qingxi. Progress of hyperspectral remote sensing applications on cultural relics protection [J]. Acta Geodaetica et Cartographica Sinica, 2023, 52(7): 1126-1138. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||