Accès libre

Efficient Cost-Effective Static-PPP Using Mixed GPS/Glonass Single-Frequency Observations (KSA)

   | 22 avr. 2022
À propos de cet article

Citez

Aggrey J (2014). “Multi-GNSS Precise Point Positioning Software Architecture and Analysis of GLONASS Pseudo-range Biases”. Master thesis. York university, Canada. Aggrey J ( 2014 ). “ Multi-GNSS Precise Point Positioning Software Architecture and Analysis of GLONASS Pseudo-range Biases ”. Master thesis . York university , Canada . Search in Google Scholar

Bisnath S., Gao Y. (2008). Current State of Precise Point Positioning and Future Prospects and Limitations. International Association of Geodesy Symposia, Vol. 133 pp. 615–623, 2008. Bisnath S. Gao Y. ( 2008 ). Current State of Precise Point Positioning and Future Prospects and Limitations . International Association of Geodesy Symposia , Vol. 133 pp. 615 623 , 2008. Search in Google Scholar

Cai C (2009). “Precise Point Positioning Using Dual-Frequency GPS and GLONASS Measurements.” Calgary: UCGE Reports No. 20291, pp. 40–52. Cai C ( 2009 ). “ Precise Point Positioning Using Dual-Frequency GPS and GLONASS Measurements .” Calgary: UCGE Reports No. 20291 , pp. 40 52 . Search in Google Scholar

Chen K and Y Gao (2005). “Real-Time Precise Point Positioning Using Single Frequency Data,” Proceedings of the 18th International Technical Meeting of the Satellite Division of The Institute of Navigation (ION GNSS 2005), Long Beach, CA, September 2005, pp. 1514–1523. Chen K Gao Y ( 2005 ). “ Real-Time Precise Point Positioning Using Single Frequency Data ,” Proceedings of the 18th International Technical Meeting of the Satellite Division of The Institute of Navigation (ION GNSS 2005) , Long Beach, CA , September 2005, pp. 1514 1523 . Search in Google Scholar

CSRS-PPP (2021). CSRS-PPP: Canadian Spatial Reference System (CSRS) Precise Point Positioning (PPP) service. https://webapp.geod.nrcan.gc.ca/geod/tools-outils/ppp.php?locale=en. Accessed (3/2/2021). CSRS-PPP ( 2021 ). CSRS-PPP: Canadian Spatial Reference System (CSRS) Precise Point Positioning (PPP) service . https://webapp.geod.nrcan.gc.ca/geod/tools-outils/ppp.php?locale=en . Accessed ( 3/2/2021 ). Search in Google Scholar

Ding, W., Tan, B., Chen, Y., Teferle, F. N., & Yuan, Y. (2018). Evaluation of a regional real-time precise positioning system based on GPS/BeiDou observations in Australia. Advances in Space Research, 61(3), 951–961. Ding W. Tan B. Chen Y. Teferle F. N. Yuan Y. ( 2018 ). Evaluation of a regional real-time precise positioning system based on GPS/BeiDou observations in Australia . Advances in Space Research , 61 ( 3 ), 951 961 . Search in Google Scholar

Du, Y., Wang, J., Rizos, C. and Ahmed El-Mowafy (2021). “Vulnerabilities and integrity of precise point positioning for intelligent transport systems: overview and analysis”. Satellite Navigation 2, 3 (2021). https://doi.org/10.1186/s43020-020-00034-8. Du Y. Wang J. Rizos C. El-Mowafy Ahmed ( 2021 ). “ Vulnerabilities and integrity of precise point positioning for intelligent transport systems: overview and analysis Satellite Navigation 2 3 (2021). https://doi.org/10.1186/s43020-020-00034-8 . Search in Google Scholar

Farah, A. (2013). “Effect analysis of GPS observation type and duration on convergence behavior of static PPP”. Journal of Geomatics, vol.7, no.2, October 2013. Farah A. ( 2013 ). “ Effect analysis of GPS observation type and duration on convergence behavior of static PPP ”. Journal of Geomatics , vol. 7 , no. 2 , October 2013. Search in Google Scholar

Farah, A. (2014). “Assessment study of static-PPP convergence behavior using GPS, GLONASS and mixed GPS/GLONASS observations”. Artificial Satellites Journal of Planetary Geodesy, Vol. 49, No. 1 2014 DOI: 10.2478/arsa-2014-0005 Farah A. ( 2014 ). “ Assessment study of static-PPP convergence behavior using GPS, GLONASS and mixed GPS/GLONASS observations ”. Artificial Satellites Journal of Planetary Geodesy , Vol. 49 , No. 1 2014 DOI: 10.2478/arsa-2014-0005 Open DOISearch in Google Scholar

Farah, A. (2016). “Accuracy evaluation for online Precise Point Positioning Services”. Journal of Geomatics, vol.10, no.1, April 2016. Farah A. ( 2016 ). “ Accuracy evaluation for online Precise Point Positioning Services ”. Journal of Geomatics , vol. 10 , no. 1 , April 2016. Search in Google Scholar

Farah, A. (2017) “Accuracy Assessment Study for Kinematic PPP using Low-Cost GPS Receiver”. Al Azhar’s 14th International Conference on: Engineering, Architecture & Technology (AEIC) (12-14) December, 2017. Cairo, Egypt. Farah A. ( 2017 ) “ Accuracy Assessment Study for Kinematic PPP using Low-Cost GPS Receiver”. Al Azhar’s 14th International Conference on: Engineering, Architecture & Technology (AEIC) (12-14) December, 2017 . Cairo , Egypt . Search in Google Scholar

Farah, A. (2021) “Static-PPP Behaviour using GPS, GLONASS and Mixed GPS/GLONASS Single/Dual Observations under Different Satellites Geometry Processed by CSRS-PPP Version-3 Service (Riyadh, KSA)”. Journal of Geomatics, Vol. 15 No.2. Farah A. ( 2021 ) “ Static-PPP Behaviour using GPS, GLONASS and Mixed GPS/GLONASS Single/Dual Observations under Different Satellites Geometry Processed by CSRS-PPP Version-3 Service (Riyadh, KSA) Journal of Geomatics , Vol. 15 No. 2 . Search in Google Scholar

GFZ (2021). GFZ German Research Center for Geosciences. Kp_ap_Ap_SN_F107_nowcast. http://www-app3.gfz-potsdam.de/kp_index/Kp_ap_Ap_SN_F107_nowcast.txt. Accessed (2-11-2021). GFZ ( 2021 ). GFZ German Research Center for Geosciences. Kp_ap_Ap_SN_F107_nowcast . http://www-app3.gfz-potsdam.de/kp_index/Kp_ap_Ap_SN_F107_nowcast.txt . Accessed ( 2-11-2021 ). Search in Google Scholar

Hofmann-Wellenhof B, and H Lichtenegger (2008). “Global Navigation Satellite Systems.” NewYork: SpringerWien, pp. 3–58. Hofmann-Wellenhof B Lichtenegger H ( 2008 ). “ Global Navigation Satellite Systems .” NewYork : SpringerWien , p. 33 58 . Search in Google Scholar

Krietemeyer A, Ten Veldhuis M-c, Van der Marel H, Realini E, Van de Giesen N. Potential of Cost-Efficient Single Frequency GNSS Receivers for Water Vapor Monitoring. Remote Sensing. 2018; 10(9):1493. https://doi.org/10.3390/rs10091493 Krietemeyer A Ten Veldhuis M-c Van der Marel H Realini E Van de Giesen N. Potential of Cost-Efficient Single Frequency GNSS Receivers for Water Vapor Monitoring . Remote Sensing . 2018 ; 10 ( 9 ): 1493 . https://doi.org/10.3390/rs10091493 Search in Google Scholar

KSACORS (2021). Kingdom of Saudi Arabia-Continuously Operating Reference Stations. https://ksacors.gcs.gov.sa/. Accessed (10-3-2021). KSACORS ( 2021 ). Kingdom of Saudi Arabia-Continuously Operating Reference Stations . https://ksacors.gcs.gov.sa/ . Accessed ( 10-3-2021 ). Search in Google Scholar

KSA-GASGI (2021). Kingdom of Saudi Arabia-General Authority for Survey and Geospatial Information. https://www.gasgi.gov.sa/en/pages/default.aspx. Accessed (2-3-2021). KSA-GASGI ( 2021 ). Kingdom of Saudi Arabia-General Authority for Survey and Geospatial Information . https://www.gasgi.gov.sa/en/pages/default.aspx . Accessed ( 2-3-2021 ). Search in Google Scholar

Leandro R F (2009). “Precise point positioning a new approach for positioning, atmospheric studies, and signal analysis.” Fredericton, New Brunswick, Canada, Technical Report No. 267, http://www.gmat.unsw.edu.au/snap/gps/glossary. Accessed: August, 2014. Leandro R F ( 2009 ). “ Precise point positioning a new approach for positioning, atmospheric studies, and signal analysis .” Fredericton, New Brunswick, Canada, Technical Report No. 267 , http://www.gmat.unsw.edu.au/snap/gps/glossary . Accessed: August, 2014 . Search in Google Scholar

SILSO (2021). Sunspot Index and Long-term Solar Observations. Daily total sunspot number. https://wwwbis.sidc.be/silso/datafiles. Accessed (1-11-2021) SILSO ( 2021 ). Sunspot Index and Long-term Solar Observations . Daily total sunspot number . https://wwwbis.sidc.be/silso/datafiles . Accessed ( 1-11-2021 ) Search in Google Scholar

Soycan, M. (2012). “A quality evaluation of precise point positioning within the Bernese GPS Software Version 5.0” Arabian Journal for Science and Engineering, Vol. 37 No. 1, 147–162. Soycan M. ( 2012 ). “ A quality evaluation of precise point positioning within the Bernese GPS Software Version 5.0 Arabian Journal for Science and Engineering , Vol. 37 No. 1 , 147 162 . Search in Google Scholar

STCE (2021). Solar-Terrestrial Center of Excellence newsletter (2021). https://www.stce.be/newsletter/newsletter.php. Accessed (1/11/2021). STCE ( 2021 ). Solar-Terrestrial Center of Excellence newsletter (2021) . https://www.stce.be/newsletter/newsletter.php . Accessed ( 1/11/2021 ). Search in Google Scholar

TEQC (2021). TEQC-UNAVCO Tutorial. http://facility.unavco.org/software/teqc/doc/UNAVCO_Teqc_Tutorial.pdf. Accessed (4/2/2021). TEQC ( 2021 ). TEQC-UNAVCO Tutorial . http://facility.unavco.org/software/teqc/doc/UNAVCO_Teqc_Tutorial.pdf . Accessed ( 4/2/2021 ). Search in Google Scholar

Trimble (2021). Trimble NetR9 GNSS Reference Receiver user guide. http://navgeotech.com/ftp/user_guide/um_NetR9_en.pdf. Accessed (12-5-2021). Trimble ( 2021 ). Trimble NetR9 GNSS Reference Receiver user guide . http://navgeotech.com/ftp/user_guide/um_NetR9_en.pdf . Accessed ( 12-5-2021 ). Search in Google Scholar

Trimble Planning (2021). Trimble GNSS planning online. https://www.gnssplanning.com/#/settings. Accessed (10-8-2021) Trimble Planning ( 2021 ). Trimble GNSS planning online . https://www.gnssplanning.com/#/settings . Accessed ( 10-8-2021 ) Search in Google Scholar

eISSN:
2083-6104
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Geosciences, other