[1] ALEXANDER L, BROWN M, GREENSLADE B, et al. Development of IHO S-100:the new IHO geospatial standard for hydrographic data[J]. International Hydrographic Review, 2007,8(1):56-62. [2] International Hydrographic Organization. IHO transfer standard for digital hydrographic data edition 3.1[M]. Monaco:International Hydrographic Bureau, 2000. [3] WARD R, ALEXANDER L, GREENSLADE B. IHO S-100:the new IHO hydrographic geospatial standard for marine data and information[J]. Zeitschrift Für Die Gesamte Staatswissenschaft, 2008, 69(2):312-323. [4] International Hydrographic Organization. S-100 universal hydrographic data model edition 1.0.0[M]. Monaco:International Hydrographic Bureau, 2010. [5] International Hydrographic Organization. S-100 universal hydrographic data model edition 2.0.0[M]. Monaco:International Hydrographic Bureau, 2015. [6] International Hydrographic Organization. S-100 universal hydrographic data model edition 3.0.0[M]. Monaco:International Hydrographic Bureau, 2017. [7] International Hydrographic Organization. Master plan for the development and implementation of S-100[M]. Monaco:International Hydrographic Bureau, 2015. [8] 交通运输部南海航海保障中心. 基于S-100的E航海数据交换标准与技术架构[M]. 北京:测绘出版社, 2016. [9] International Hydrographic Organization. IHO hydrographic services and standards committee 9th HSSC meeting final minutes[EB/OL]. 2017-12-18[2018-04-10]. https://www.iho.int/mtg_docs/com_wg/HSSC/HSSC9/HSSC9_Final_Minutes_18Dec2017.pdf. [10] ROJAS M E. IHO S-100:the new hydrographic geospatial standard for marine data and information[J]. Zeitschrift Für Die Gesamte Staatswissenschaft, 2008, 69(2):312-323. [11] 交通运输部海事局. S-100通用海道测量数据模型[M]. 天津:天津科学技术出版社, 2011. [12] 谢志茹, 桑金, 汪连贺,等. 浅议《S-100通用海道测量数据模型》的翻译[J]. 测绘标准化, 2011(1):46-48. [13] 陈长林, 翟京生, 陆毅. IHO海洋测绘地理空间数据新标准分析与思考[J]. 测绘科学技术学报, 2011, 28(4):300-303. [14] 王昭, 汪连贺, 谢志茹. S-100的体系结构和若干重要概念[J]. 海洋测绘, 2011, 31(2):76-79. [15] 周晖, 刘仲刚, 贾建军. IHO S-100中概念模式语言的应用[J]. 海洋测绘, 2009, 29(4):57-59. [16] 张岳, 王荣林. IHO S-100中坐标参照系的研究[J]. 气象水文海洋仪器, 2014, 31(1):15-18. [17] 刘青春. 基于S-100建模机制的海图数据研究[D]. 大连:大连海事大学, 2012. [18] 窦红霞. 基于S-100标准海图要素建模应用模式研究[D]. 大连:大连海事大学, 2013. [19] 陈长林, 翟京生, 陆毅. 海洋测绘国际标准S-100的空间模式[J]. 测绘科学技术学报, 2012, 29(1):61-65. [20] 彭文, 桑百川,沈继青,等. IHO S-100通用海道测量数据模型图示表达[J]. 海洋测绘, 2017,37(1):55-59. [21] International Hydrographic Organization. S-101 ENC product specification edition draft 0.0.2[M]. Monaco:International Hydrographic Bureau, 2016. [22] International Hydrographic Organization. S-99 operational procedures for the organization and management of the S-100 geospatial information registry edition 1.1.0[M]. Monaco:International Hydrographic Bureau, 2012. [23] POWELL J. The new electronic chart product specification S-101:an overview[J]. Transnav the International Journal on Marine Navigation & Safety of Sea Transportation, 2011, 5(2):167-171. [24] 王昭. 新一代电子航海图标准S-101的研究进展[J]. 海洋测绘, 2013, 33(1):72-75. [25] 徐进, 李颖, 周颖,等. S-101电子海图产品规范解析[J]. 测绘科学, 2016, 41(3):150-155. [26] 刘灿由, 翟京生, 陆毅. 新一代电子航海图标准S-101结构分析[J]. 海洋测绘, 2013, 33(1):76-79. [27] 陈长林, 徐立, 于国栋,等. S-101与S-57分类编码对比分析(一):要素[J]. 海洋测绘, 2016, 36(4):52-55. [28] 陈长林, 徐立, 黄瑞阳,等. S-101与S-57分类编码对比分析(二):属性[J]. 海洋测绘, 2016, 36(5):61-65. [29] 陈长林, 卫国兵, 王耿峰,等. S-101与S-57分类编码对比分析(三):复杂结构[J]. 海洋测绘, 2016, 36(6):70-74. [30] 刘灿由, 翟京生, 张威,等. 基于S-101的全球多尺度电子航海图调显方法[J]. 测绘科学技术学报, 2013, 30(5):530-534. [31] International Hydrographic Organization. Bathymetric surface product specification edition 1.0.0[M]. Monaco:International Hydrographic Bureau, 2012. [32] International Hydrographic Organization. Bathymetric surface product specification edition 2.0.0 draft[M]. Monaco:International Hydrographic Bureau, 2016. [33] KUWALEK E, MALTAIS L, JOURNAULT M. The new IHO S-102 standard:charting a new frontier for bathymetry[J]. International Hydrographic Review, 2012(5):21-25. [34] 张岳, 张大萍. 水深表面产品规范S-102分析[J]. 海洋测绘, 2014, 34(1):80-82. [35] 张岳, 曲萌, 王荣林. 水深表面产品规范S-102的研究[J]. 测绘与空间地理信息, 2013,36(11):208-210, 214. [36] 徐进, 李颖, 陈澎,等. S-102水深表面产品规范分析[J]. 世界海运, 2016, 39(12):28-34. [37] ASTLE H, SCHWARZBERG P. Towards a universal hydrographic data model[J]. Transnav International Journal on Marine Navigation & Safety of Sea Transportation, 2013, 7(4):567-571. [38] PARK D, KWON H C, PARK S. Design and implementa-tion of feature catalogue builder based on the S-100 standard[J]. Kips Transactions on Software & Data Engineering, 2013, 2(8):571-578. [39] OH S, PARK D, KIM Y, et al. Design and implementa-tion of display module for feature symbol verification based on S-100[C]//International Conference on IT Convergence and Security. Kuala Lumpur:IEEE, 2015:1-4. [40] 胡维鑫. S-57向S-101电子海图数据转换研究[D]. 大连:大连海事大学, 2017. [41] PARK G H, PARK D, PARK S. Design and implementa-tion of display module for electronic navigational chart data[C]//International Conference on IT Convergence and Security. Beijing:IEEE, 2014:1-3. [42] OH D, PARK D, LIM Y, et al. Methods of GML-based representation of S-101 ENC vector data[C]//International Conference on IT Convergence and Security. Kuala Lumpur:IEEE, 2015:1-3. [43] 周颖. 基于数据覆盖的S-102水深数据产品研究[D]. 大连:大连海事大学, 2017. [44] OH D, PARK D, PARK S. Design of maritime meteorolo-gical information data model based on S-100[J]. Springer, 2016:851-859. [45] S-100 Working Group. S-100 test bed[EB/OL]. 2017-12-18[2018-04-11]. https://basecamp.com/2933368/projects/9982931. [46] Norweigian Nonueigian S-102 Testbed[R]. Tokyo:IHO S-100 Working Grouping Meeting, 2016. [47] MITROPOULOS E E. e-Navigation concept[C]//16th IALA Conference. Shanghai:IALA, 2006. [48] YU Y H. Relationship of CSSA with other "e-Navigation pillars" and S-100 based "products"[R]. Paris:IALA, 2014. [49] WEINTRIT A. The concept of a universal maritime data model (UMDM) essential for e-Navigation[J]. Institute of Aviation, 2010(17):484-490. [50] WEINTRIT A. Development of the IHO universal hydrogr-aphic data model as part of the development of e-Navigation Strategy[J]. Ceon Biblioteka Nauki, 2011(6):3895-3904. [51] RODSETH O J. Integrating IEC and ISO information models into the S-100 common maritime data structure[J]. MARINTEK, 2016. DOI:10.13140/RG.2.1.3075.7528. [52] MIN S K, JANG I S, LEE C H. Design and implemen-tation of the converged platform for geospatial and maritime information service based on S-100 standard[J]. Journal of Korea Spatial Information Society, 2013, 21(6):23-32. [53] ALEXANDER L, MCLEAY C. S-100 overlays:A brave new world?[C]//US Hydrographic Conference. Paul Cooper:[s.n.], 2015. [54] PARK D, PARK S. E-Navigation-supporting data manage-ment system for variant S-100-based data[J]. Multimedia Tools & Applications, 2014, 74(16):1-16. [55] PARK D, PARK S. Multiple-domain marine data utilization structure for e-Navigation[J]. Cluster Computing, 2016, 19(1):301-308. [56] PARK D, PARK S. Syntactic-level integration and display of multiple domains'S-100-based data for e-navigation[J]. Cluster Computing, 2017, 20(6):1-10. [57] 崔洪生, 吴礼龙. IHO S-100在电子航海E-Navigation中的应用[J]. 海洋测绘, 2015, 35(2):55-57. [58] 元建胜, 吴礼龙. 基于IHO S-100的ECDIS发展研究[J]. 海洋测绘, 2017, 37(2):60-64. [59] 李晓梦. 面向内河符合S-100的航行信息服务研究[D]. 大连:大连海事大学, 2017. [60] 宋志明. E-Navigation框架下海上安全信息要素模型应用模式研究[D]. 大连:大连海事大学, 2014. [61] 朱绍凡. E-navigation下的港口船舶交通海事服务集初步研究[D]. 大连:大连海事大学, 2017. [62] IALA. Efficientsea 2[EB/OL]. 2017-12-18[2018-04-11]. http://www.iala-aism.org/products-projects/e-navigation/test-bedsprojects/efficiensea-2/. [63] International Hydrographic Organization. S-98 specifica-tion for data product interoperability in S-100 navigation systems draft version 0.2[M]. Monaco:International Hydrographic Bureau, 2017. |