Research on height network adjustment using GNSS - CORS point data

  • Cơ quan:

    Hanoi University of Mining and Geology, Hanoi, Vietnam

  • *Tác giả liên hệ:
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  • Nhận bài: 16-07-2021
  • Sửa xong: 25-10-2021
  • Chấp nhận: 23-11-2021
  • Ngày đăng: 31-12-2021
Trang: 23 - 28
Lượt xem: 2149
Lượt tải: 1053
Yêu thích: 5.0, Số lượt: 105
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Tóm tắt:

Currently, in our country, we are completing the national elevation control network based on applying traditional technology and GNSS technology and using the Geoid model. Therefore, there is a requirement to solve the traditional geodetic network mixed correction problems and combine data obtained from GNSS technology, including information from the Continuous Reference Station (CORS). In the article, an algorithm to process a mixture of height network with elevation measurements and data from the CORS station was studied based on applying the theory of adjustment with the error of the original data and the recurrence adjustment. The proposed algorithm allows to calibrate the leveling network with the CORS point and can be divided into steps to analyze and evaluate the measurement quality of the network. The calculation results confirmed the reliability of the algorithm.

Trích dẫn
Ha Ngoc Hoang, 2021. Research on height network adjustment using GNSS - CORS point data, Tạp chí Khoa học kỹ thuật Mỏ - Địa chất, số 62, kỳ 6, tr. 23-28.
Tài liệu tham khảo

D. Smith, J. Heck, D. Gillins, K. Snow, (2018). On Least-Squares Adjustment Within the Variance Component Model with Stochastic Constraints. NOAA Technical Memorandum NOS NGS 72,

Fotopoulos G., (2005). Calibration of Geoid Error Models via a Combined Adjustment of Ellipsoidal, Orthometric and Gravimetrical Geoid Height Data, J. Geod. 79, pp. 111-123.

Hoang N. H., (2020). Modernization of Height System in Vietnam Using GNSS and Geoid Model. In: Tien Bui D., Tran H.T., Bui XN. (eds) Proceedings of the International Conference on Innovations for Sustainable and Responsible Mining. Lecture Notes in Civil Engineering, vol 108. Springer, Cham. https:// doi.org/10.1007/978-3-030-60269-7_8.

Hoang, N. H., (2006). Adjustment o:f Geodetic and GPS networks, Science and Technology Publishing House, Hanoi.

Hoang, N. H., Truong, Q. H., (2000). Basis of   Mathematical Processing for Geodetic Data, Transport Publishing House (in Vietnamese).

Kotsakis, C., Sideris, M. G., (1999). On the adjustment of Combined GPS/Levelling/Geoid Networks. Journal of Geodesy, Vol. 73, No. 8, pp. 412-421.

Leick, A., (1995). GPS Satellite Surveying/ 2nd ed. A Wiley interrscience publication. John Wiley and Sons. Inc.

Markuze Y. U. I., Golubev V.V. (2010). Theory of mathematical processing of geodetic data. Alma Mater.

Markuze, I. U., (1990). Basis of Geodetic Adjustment Computation, Nhedra Moscow   Publishing House (in Russian).

Markuze, I. U., Hoang, N. H., (1991). Adjustment of Terrestrial and Satellite Space Networks, Nhedra Moscow Publishing House (in Russian), pp. 274.

Ogundare J., (2019). Understanding Least Squares Estimation and Geomatics Data Analysis. John Wiley and Sons, Ins.

The Project, (2018). Modernizing the national height network to serve the planning, construction, socio- economic development and climate change response in a number of big cities and coastal areas. Ministry of Natural Resources and Environment of Vietnam.