Research Article
BibTex RIS Cite

Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması

Year 2020, Volume: 5 Issue: 2, 120 - 126, 01.08.2020
https://doi.org/10.29128/geomatik.586990

Abstract

Son yıllarda internet üzerinden online GNSS değerlendirme servisleri konum
elde etmede önemli bir araç olarak kullanılmaktadır. Bu sistemlerin en önemli
özelliği GNSS verilerinin değerlendirme konusunda hiçbir bilgiye sahip olmayan
kişilerin veriyi rahatlıkla değerlendirebilmesine olanak sunması ve ücretsiz
olmasından dolayı ticari veya bilimsel yazılımın alınmasına gerek
duyulmamasıdır. Bu çalışmada ANRK, ANTL, IZMI, SINP ve VAN1 istasyonlarına ait
RINEX gözlemleri 1, 4, 8, 12, 16, 20 ve 24 saatlik dilimlere ayrılarak CSRS-PPP
ve Trimble-RTX servislerine gönderilmiş ve elde edilen koordinatların doğruluk
araştırılması yapılmıştır. Çalışma sonucunda CSRS-PPP servisinden elde edilen
konum verisinin referans veriye daha yakın olduğu anlaşılmıştır. 

References

  • Zumberge, J. F., Heflin, M. B., Jefferson, D. C., Watkins, M. M., and Webb, F. H. (1997). Precise point positioning for the efficient and robust analysis of GPS data from large networks. Journal of Geophysical Research: Solid Earth, 102(B3), 5005-5017.
  • Kouba, J., and Héroux, P. (2001). Precise point positioning using IGS orbit and clock products. GPS solutions, 5(2), 12-28.
  • Kouba, J. (2003). Measuring seismic waves induced by large earthquakes with GPS. Studia Geophysica et Geodaetica, 47(4), 741-755.
  • Gao, Y., Wojciechowski, A., and Chen, K. (2005). Airborne kinematic positioning using precise point positioning methodology. Geomatica, 59(1), 29-36.
  • Kouba, J. (2009). A guide to using International GNSS Service (IGS) products.
  • Cai, C., and Gao, Y. (2007). Precise point positioning using combined GPS and GLONASS observations. Positioning, 1(11).
  • Choy, S. L., Zhang, K., Silcock, D., and Wu, F. (2007). Precise Point Positioning–a case study in Australia. In Proceedings of spatial sciences institute international conference (SSC2007), Tasmania, pp. 192-202.
  • Geng, J., Teferle, F. N., Meng, X., and Dodson, A. H. (2010). Kinematic precise point positioning at remote marine platforms. GPS solutions, 14(4), 343-350.
  • Huber, K., Heuberger, F., Abart, C., Karabatic, A., and Weber, R. (2010). PPP: Precise Point Positioning–constraints and opportunities.
  • Ocalan, T., and Alkan, R. M. (2012). Performance Analysis of Web-Based Online Precise Point Positioning (PPP) Services for Marine Applications. In The 14th IAIN Congress.
  • Furones, M., Esteban, Á., Anquela Julián A. B., Berné Valero J. L., and Sanmartín, M. (2012). Kinematic GNSS-PPP results from various software packages and raw data configurations. In Scientific Research and Essays (Vol. 7, No. 3, pp. 419-431). Academic Journals.
  • Elsobeiey, M., and El-Rabbany, A. (2013). Efficient between-satellite single-difference precise point positioning model. Journal of Surveying Engineering, 140(2).
  • Chen, J., Li, H., Wu, B., Zhang, Y., Wang, J., and Hu, C. (2013). Performance of real-time precise point positioning. Marine Geodesy, 36(1), 98-108.
  • Liu, Z., Ji S., Chen, W., and Ding, X. (2013). New fast precise kinematic surveying method using a single dual-frequency GPS receiver. Journal of Surveying Engineering, 139(1), 19-33.
  • Bertiger, W., Desai, S. D., Haines, B., Harvey, N., Moore, A. W., Owen, S., Weiss, J. P. (2010). Single receiver phase ambiguity resolution with GPS data. Journal of Geodesy, 84(5), 327-337.
  • Ghoddousi-Fard, R., and Dare, P. (2006). Online GPS processing services: an initial study. GPS solutions, 10(1), 12-20.
  • Guo, Q. (2015). Precision comparison and analysis of four online free PPP services in static positioning and tropospheric delay estimation. GPS solutions, 19(4), 537-544.
  • Martín, A., Anquela, A. B., Capilla, R., and Berné, J. L. (2010). PPP technique analysis based on time convergence, repeatability, IGS products, different software processing, and GPS+ GLONASS constellation. Journal of Surveying Engineering, 137(3), 99-108.
Year 2020, Volume: 5 Issue: 2, 120 - 126, 01.08.2020
https://doi.org/10.29128/geomatik.586990

Abstract

References

  • Zumberge, J. F., Heflin, M. B., Jefferson, D. C., Watkins, M. M., and Webb, F. H. (1997). Precise point positioning for the efficient and robust analysis of GPS data from large networks. Journal of Geophysical Research: Solid Earth, 102(B3), 5005-5017.
  • Kouba, J., and Héroux, P. (2001). Precise point positioning using IGS orbit and clock products. GPS solutions, 5(2), 12-28.
  • Kouba, J. (2003). Measuring seismic waves induced by large earthquakes with GPS. Studia Geophysica et Geodaetica, 47(4), 741-755.
  • Gao, Y., Wojciechowski, A., and Chen, K. (2005). Airborne kinematic positioning using precise point positioning methodology. Geomatica, 59(1), 29-36.
  • Kouba, J. (2009). A guide to using International GNSS Service (IGS) products.
  • Cai, C., and Gao, Y. (2007). Precise point positioning using combined GPS and GLONASS observations. Positioning, 1(11).
  • Choy, S. L., Zhang, K., Silcock, D., and Wu, F. (2007). Precise Point Positioning–a case study in Australia. In Proceedings of spatial sciences institute international conference (SSC2007), Tasmania, pp. 192-202.
  • Geng, J., Teferle, F. N., Meng, X., and Dodson, A. H. (2010). Kinematic precise point positioning at remote marine platforms. GPS solutions, 14(4), 343-350.
  • Huber, K., Heuberger, F., Abart, C., Karabatic, A., and Weber, R. (2010). PPP: Precise Point Positioning–constraints and opportunities.
  • Ocalan, T., and Alkan, R. M. (2012). Performance Analysis of Web-Based Online Precise Point Positioning (PPP) Services for Marine Applications. In The 14th IAIN Congress.
  • Furones, M., Esteban, Á., Anquela Julián A. B., Berné Valero J. L., and Sanmartín, M. (2012). Kinematic GNSS-PPP results from various software packages and raw data configurations. In Scientific Research and Essays (Vol. 7, No. 3, pp. 419-431). Academic Journals.
  • Elsobeiey, M., and El-Rabbany, A. (2013). Efficient between-satellite single-difference precise point positioning model. Journal of Surveying Engineering, 140(2).
  • Chen, J., Li, H., Wu, B., Zhang, Y., Wang, J., and Hu, C. (2013). Performance of real-time precise point positioning. Marine Geodesy, 36(1), 98-108.
  • Liu, Z., Ji S., Chen, W., and Ding, X. (2013). New fast precise kinematic surveying method using a single dual-frequency GPS receiver. Journal of Surveying Engineering, 139(1), 19-33.
  • Bertiger, W., Desai, S. D., Haines, B., Harvey, N., Moore, A. W., Owen, S., Weiss, J. P. (2010). Single receiver phase ambiguity resolution with GPS data. Journal of Geodesy, 84(5), 327-337.
  • Ghoddousi-Fard, R., and Dare, P. (2006). Online GPS processing services: an initial study. GPS solutions, 10(1), 12-20.
  • Guo, Q. (2015). Precision comparison and analysis of four online free PPP services in static positioning and tropospheric delay estimation. GPS solutions, 19(4), 537-544.
  • Martín, A., Anquela, A. B., Capilla, R., and Berné, J. L. (2010). PPP technique analysis based on time convergence, repeatability, IGS products, different software processing, and GPS+ GLONASS constellation. Journal of Surveying Engineering, 137(3), 99-108.
There are 18 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Makaleler
Authors

Samed İnyurt 0000-0001-9339-7569

Mustafa Ulukavak 0000-0003-2092-3075

Publication Date August 1, 2020
Published in Issue Year 2020 Volume: 5 Issue: 2

Cite

APA İnyurt, S., & Ulukavak, M. (2020). Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması. Geomatik, 5(2), 120-126. https://doi.org/10.29128/geomatik.586990
AMA İnyurt S, Ulukavak M. Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması. Geomatik. August 2020;5(2):120-126. doi:10.29128/geomatik.586990
Chicago İnyurt, Samed, and Mustafa Ulukavak. “Web Tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması”. Geomatik 5, no. 2 (August 2020): 120-26. https://doi.org/10.29128/geomatik.586990.
EndNote İnyurt S, Ulukavak M (August 1, 2020) Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması. Geomatik 5 2 120–126.
IEEE S. İnyurt and M. Ulukavak, “Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması”, Geomatik, vol. 5, no. 2, pp. 120–126, 2020, doi: 10.29128/geomatik.586990.
ISNAD İnyurt, Samed - Ulukavak, Mustafa. “Web Tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması”. Geomatik 5/2 (August 2020), 120-126. https://doi.org/10.29128/geomatik.586990.
JAMA İnyurt S, Ulukavak M. Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması. Geomatik. 2020;5:120–126.
MLA İnyurt, Samed and Mustafa Ulukavak. “Web Tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması”. Geomatik, vol. 5, no. 2, 2020, pp. 120-6, doi:10.29128/geomatik.586990.
Vancouver İnyurt S, Ulukavak M. Web tabanlı GNSS Yazılımlarının (CSRS-PPP, Trimble-RTX) Performansının Araştırılması. Geomatik. 2020;5(2):120-6.