我国常用地心坐标系的现状与发展

The current situation and development of the commonly-used geocentric coordinate system in China

  • 摘要: 针对我国常用地心坐标系CGCS2000、北斗坐标系(BDCS)和WGS-84坐标系的现状,对三种坐标系之前的联系与区别进行了辨析,指出了各自存在的问题与局限性,并参考国外经验,对我国的CGCS2000坐标系和BDCS坐标系的进一步发展提出了建议. CTRF2000建立至今已超过20年,不具备现势性,更适用于要求统一性和稳定性的二维坐标应用场景,因此,应持续进行维持,进行定期更新. 我国已有上万个连续运行参考站(CORS),有条件也有必要建立我国境内的准实时参考框架,用于更高精度的三维坐标应用场景. 长期以来,习惯于把全球导航卫星系统(GNSS)测得的坐标都叫作WGS-84坐标系. 在生产实践中应重点关心地心坐标的三要素:精度、历元和框架. BDCS坐标系与WGS-84坐标系没有本质区别,借鉴美国地理空间情报局(NGA)的做法,对BDCS坐标系地基和天基参考框架的概念进行扩展,使BDCS坐标系同时具备全球性、现势性和精准性. 概念扩展后的BDCS参考框架的作用相当于“WGS-84+IGS”. 在数字地球、3S集成、智慧城市等应用中,可采用CGCS2000和BDCS坐标系双基准服务. 以CGCS2000为基础底图的基准,在高精度应用中使用扩展后的BDCS坐标系基准,可兼顾标准性和现势性,并满足全球化和精准化需求.

     

    Abstract: In this paper, the current status of CGCS2000, BeiDou coordinate system (BDCS) and WGS-84 coordinate system in common use in China is introduced, the connection and difference between them are analyzed, the existing problems and limitations are pointed out, and some suggestions for the further development of CGCS2000 and BDCS in China are put forward by referring to foreign experience. CGCS2000 reference frame has been established for more than 20 years. It is not current and is more suitable for 2D coordinate application scenarios requiring unity and stability. Therefore, it should be maintained continuously and updated regularly. There are tens of thousands of continuously operating refererce station (CORS) in China, and it is necessary and conditional to establish a real-time reference frame in China for higher precision 3D coordinate application scenarios. For a long time, people used to refer to the Global Navigation Satelite system (GNSS) coordinates as WGS-84, which became synonymous with the geocentric coordinate system. In production practice, it is not important which coordinate system a geocentric coordinate belongs to, but the three elements of a geocentric coordinate must be focused on, such as precision, calendar element and frame. There is no essential difference between BDCS and WGS-84. Based on the practice of NGA, the concept of BDCS ground-based and space-based reference frame is expanded to make BDCS global, current and accurate at the same time. The role of the BDCS reference framework after concept extension is equivalent to “WGS84+IGS”. In digital Earth, 3S integration, smart city and other applications, CGCS2000 and BDCS dual benchmark services can be adopted. Based on THE CGCS2000 base map, the expanded BDCS benchmark can be used in high-precision applications, which can take into account the standards and the current situation, and meet the needs of globalization and precision.

     

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