Acta Geodaetica et Cartographica Sinica ›› 2024, Vol. 53 ›› Issue (9): 1706-1714.doi: 10.11947/j.AGCS.2024.20240077

• Precision Engineering Survey • Previous Articles    

Rapid single point positioning enhancement service and application based on urban CORS

Yang LIU1,2,3(), Guang YANG1,3(), Xiaohui CHENG1,2, Xiao ZHANG1   

  1. 1.Guangzhou Urban Planning & Design Survey Research Institute, Guangzhou 510060, China
    2.Collaborative Innovation Center for Natural Resources Planning and Marine Technology of Guangzhou, Guangzhou 510060, China
    3.Guangdong Enterprise Key Laboratory for Urban Sensing, Monitoring and Early Warning, Guangzhou 510060, China
  • Received:2024-02-22 Published:2024-10-16
  • Contact: Guang YANG E-mail:liuyang_052@163.com;ygmail2000@163.com
  • About author:LIU Yang (1981—), male, PhD, majors in surveying and mapping geographic information, territorial spatial governance and resilient urban construction. E-mail: liuyang_052@163.com
  • Supported by:
    Guangdong Provincial Key Field Research and Development Program(2020B0101130009);Guangdong Key Laboratory Fund Project for Urban Sensing, Monitoring and Early Warning(2020B121202019);Project of Collaborative Innovation Center for Natural Resources Planning and Marine Technology of Guangzhou(2023B04J0301)

Abstract:

In the realm of smart city development, the scalability, privacy, and heightened reliability of CORS (continuously operating reference station) location services have emerged as pivotal focal points. This paper presents an innovative urban CORS augmented positioning service leveraging PPP-RTK (precise point positioning-real-time kinematic) technology. It delineates the formulaic methodology for achieving enhanced precision single-point positioning within urban environments, elucidating the estimable parameters essential for urban CORS augmented positioning and their practical implementation on client platforms. Through integration with real-time data sourced from the Guangzhou CORS network, the efficacy of the PPP-RTK service is rigorously evaluated. Test results demonstrate that the initial epoch of the PPP-RTK client plane rapidly converges to centimeter-level accuracy, with vertical elevation convergence achieved within approximately seven epochs. Furthermore, the performance of the enhanced positioning parameter SSR2OSR (state space representation to observation space representation) in PPP-RTK is found to be comparable to that of short baseline RTK solutions, thus substantiating its capacity to cater to the monitoring requirements of a substantial user base. On-board experiments exhibit superior 3D accuracy, surpassing lane-level precision by a margin of less than 0.5 meters, underscoring the capability of PPP-RTK positioning to fulfill the stringent reliability criteria essential for various positioning applications.

Key words: CORS, BDS, precise single point positioning, ground enhancement system

CLC Number: