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Accuracy Analysis of GPS Ellipsoidal Height Determination in Accordance with the Surveying Conditions

관측조건에 따른 GPS 타원체고 결정의 정확도 분석

  • Lee, Suk Bae (Department of Civil Engineering, Gyeongnam National University of Science and Technology) ;
  • Auh, Su Chang (Department of Civil Engineering, Gyeongnam National University of Science and Technology)
  • 이석배 (경남과학기술대학교 토목공학과) ;
  • 어수창 (경남과학기술대학교 토목공학과)
  • Received : 2015.12.07
  • Accepted : 2015.12.15
  • Published : 2015.12.31

Abstract

GNSS/Leveling technology makes it possible to get geoidal height geometrically using GNSS and Leveling technology. GNSS/Geoid technology refers to a technology for obtaining orthometric height by subtracting geoidal height achieved by Geoid technology from ellipsoidal height achieved by GNSS technology. The purpose of this study is to verify the accuracy of the ellipsoidal height determination in order to verify the accuracy of the orthometric height determination by the GNSS/Geoid technology. For the study, a test bed was selected in Kyungnam province and GNSS Static surveying was accomplished in the test bed and then the GNSS data was processed in accordance with various analysis conditions. So, it was verified the accuracy of the ellipsoidal heights determination in accordance with the surveying conditions under the GNSS Static surveying. According to the research results, to ensure the 3cm goal accuracy of the ellipsoidal height determination, it should be surveyed by four fixed points on the survey area periphery and more than two hours of the GNSS occupation time, And also, it was found that should be limited to a baseline distance of 20km under the GNSS Static surveying.

GNSS/Leveling기술은 GNSS기술과 Leveling기술을 이용하여 기하학적 방법으로 지오이드고를 얻을 수 있게 해주며, GNSS/Geoid기술은 GNSS기술을 통해 얻은 타원체고에서 Geoid기술을 통해 얻은 지오이드고를 제하여 정표고를 얻는 기술을 말한다. 본 연구에서는 GNSS/Geoid기술을 이용한 표고결정 정확도를 검증하기 위하여 GNSS 타원체고 측정의 정확도를 검증하고자 하였다. 연구를 위하여 경남 지역에 테스트 베드(test bed)를 선정하고 GNSS 정적측위관측을 실시하였으며, 여러 가지 해석 조건에 따라 데이터를 처리함으로써 관측조건에 따른 GNSS 타원체고 측정의 정확도를 규명하였다. 연구결과 GNSS 정적측위방법에 의한 타원체고 결정에 있어서 3cm의 목표정확도를 확보하기 위해서는 측량지역 주변부의 네 점의 기지점을 고정하여 두 시간 이상 관측하여야 하며 기선거리는 20km로 제한하여야 한다는 것을 알 수 있었다.

Keywords

References

  1. GSI, 2014, Guidelines for establishing GNSS-Derived orthometric heights, GSI Publication A1-No.368, Geospatial Information Authority of Japan, Tsukuba, Japan, pp. 5-22. (in Japanese)
  2. Lee, S. B., Kim, J. S., Kim, C. Y. and and Kwon, J. H., 2009, Calculation of geometric geoidal heights by GPS surveying on 1st and 2nd order Benchmark line, Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography, Vol. 27, No. 2, pp. 213-223.
  3. Lee, S. B., 2009, Accuracy evaluation of the height determined by Network-RTK VRS positioning, Journal of the Korean Society for Geospatial Information System, Vol. 21, No. 4, pp. 3-12. https://doi.org/10.7319/KOGSIS.2013.21.4.003
  4. Lee, S. B. and Auh, S. C., 2015a, The basic rules for orthometric height determination using GNSS/ Geoid technology in GNSS Static surveying, Proc. of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography, pp. 349-351.
  5. Lee, S. B. and Auh, S. C., 2015b, Evaluation of height accuracy according to observation condition in GNSS Static surveying, Proc. of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography, pp. 141-142.
  6. Lee, S. B. and Auh, S. C., 2015c, Basic research for height determination of the GNSS Static method using GNSS/Geoid technology, Proc. 2015 Conference of the Korean Society for Geospatial Information Science, pp. 95-96.
  7. Lee, S. B. and Auh, S. C., 2015, Accuracy evaluation of ellipsoidal height at GNSS Static surveying under observation condition, Korean Society of Civil Engineers, KSCE 2015 Convention, GSCO, KOREA, pp. 1-2.
  8. Lee, S. B, and Sim, J. M., 2015, Development and inspection of the Ortho-Calc v1.0 program for the calculation of the orthometric correction, Journal of the Korean Society for Geospatial Information Science, Vol. 23, No. 3, pp. 41-47.
  9. NGII, 2015, N-OPS(NGII Online Positioning System) service, https://gnss.ngii.go.kr/service/ops/precision
  10. NOAA, 2015, GRAV-D, http://www.ngs.noaa.gov/GRAV-D/
  11. Shin, G. S., Han, J. H. and Kwon J. H., 2014, Accuracy analysis of orthometric heights based on GNSS Static surveying, Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography, Vol. 32, No. 5, pp. 527-537. https://doi.org/10.7848/ksgpc.2014.32.5.527
  12. Zilkoski D. B., Carlson E. E. and Smith C. L., 2008, Guidelines for establishing GPS-Derived orthometric heights, NOAA Technical Memorandum NOS NGS-59 Version 1.5 National Geodetic Survey, USA, pp. 1-19.
  13. Zilkoski D. B. , D'Onofrio J. D. and Frakes S. J., 1997, Guidelines for establishing GPS-derived ellipsoidal heights (Standards: 2 and 5cm), NOAA Technical Memorandum NOS NGS-58 Version 4.3 National Geodetic Survey, USA, pp. 1-20.