Construction of nominal ionospheric gradient using satellite pair based on GNSS CORS observation in Indonesia

Author:

Supriadi SlametORCID,Abidin Hasanuddin Zainal,Wijaya Dudy Darmawan,Abadi Prayitno,Saito Susumu,Prabowo Dwiko Unggul

Abstract

AbstractGround-Based Augmentation System (GBAS) is a GNSS augmentation system that meets International Civil Aviation Organization (ICAO) requirements to support precision approach and landing. GBAS is based on local differential GNSS technique with reference stations located around an airport to provide necessary integrity and accuracy. The performance of the GBAS system can be affected by gradient in the ionospheric delay between aircraft and reference stations. A nominal ionospheric gradient, which is bounded by a conservative error bound, is represented by a parameter σvig. The parameter σvig is commonly determined using station pair to GNSS Continuous Operating Reference Station (CORS) data. The station-pair method is susceptible to doubling of the estimation error of receiver inter-frequency bias (IFB) and is not suitable with the CORS conditions in Indonesia. We propose a satellite-pair method that is found to be more suitable for the CORS network over Indonesia which is centered in Java and Sumatra islands. An overall value of σvig (5.21 mm/km) was obtained using this method along with preliminary results of a comparison of σvig from Java and Sumatra islands. Graphical Abstract

Publisher

Springer Science and Business Media LLC

Subject

Space and Planetary Science,Geology

Reference13 articles.

1. Ammana SR, Achanta SD (2016) Estimation of overbound on ionospheric spatial decorrelation over low-latitude region for ground-based augmentation systems. IET Radar Sonar Navig 10:637–645. https://doi.org/10.1049/iet-rsn.2015.0469

2. Budtho J, Supnithi P, Saito S (2020) Single-frequency time-step ionospheric delay gradient estimation at low-latitude stations. IEEE Access 8:201516–201526. https://doi.org/10.1109/ACCESS.2020.3035247

3. Datta-Barua S, Walter T, Pullen S et al (2002) Using WAAS ionospheric data to estimate LAAS short baseline gradients. Proceedings of the 2002 National Technical Meeting of the Institute of Navigation, San Diego, pp 523–530

4. International Civil Aviation Organization (ICAO) (2016) Annex 10 to the convention on international civil aviation. Amendment 90. Aeronautical Telecommunications, Brussels

5. Jung S, Lee J (2012) Long-term ionospheric anomaly monitoring for ground based augmentation systems. Radio Sci 47:1–12. https://doi.org/10.1029/2012RS005016

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3. The Strategy of GNSS CORS Processing in Southern Sumatera;2022 IEEE Asia-Pacific Conference on Geoscience, Electronics and Remote Sensing Technology (AGERS);2022-12-21

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