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Results of Software-Based Joint Processing of Signals from Global and Regional Navigation Satellite Systems

https://doi.org/10.17285/0869-7035.2017.25.4.084-094

Abstract

The paper addresses software-based joint processing of signals from global (GLONASS, GPS, BeiDou, Galileo) and regional (IRNSS) navigation satellite systems. General block diagram of an implemented model of software-based multisystem navigation receiver is presented, and its capability to process the signals from navigation systems are studied.

As a result of software processing, separate and joint navigation solutions were computed for the signals from 30 spacecraft of 5 different navigation systems used in the North-West of the Russian Federation. The accuracy of these solutions, as well as the values of horizontal dilution of precision are analyzed in the paper.

About the Authors

V. S. Bakholdin
Mozhaiskiy Military Space Academy, St. Petersburg
Russian Federation


D. A. Gavrilov
Mozhaiskiy Military Space Academy, St. Petersburg
Russian Federation


I. S. Gerasimenko
Mozhaiskiy Military Space Academy, St. Petersburg
Russian Federation


V. A. Dobrikov
Mozhaiskiy Military Space Academy, St. Petersburg
Russian Federation


V. F. Ivanov
Mozhaiskiy Military Space Academy, St. Petersburg
Russian Federation


References

1. GLONASS. Printsipy postroeniya I funktsionirovaniya (GLONASS. Principles of Construction and Functioning), Perov, A.I., and Kharisov, V.N., Eds., Moscow, Radiotekhnika, 2010.

2. Borre, K., Akos, D.M., Bertelsen, N., Rinder, P., and Jensen, S.H., A Software-Defined GPS and Galileo Receiver. A Single-Frequency Approach, Boston, Birkhäuser, 2007.

3. Suzuki, T., and Kubo, N., GNSS-SDRLIB: An Open-Source and Real-Time GNSS Software Defined Radio Library, Tokyo University of Marine Science and Technology, The 27th International Technical Meeting of the Satellite Division of The Institute of Navigation ION GNSS+, 2014.

4. Lackey, R.J., and Upmal, D.W., Speakeasy: The Military Software Radio, IEEE Communications Magazine, May 1995, pp. 56–61.

5. Akos, D.M., Normark, P. L., and Enge, P., Real-time GPS Software Radio Receiver, Proc. IONGPS NTM 2001, Jan. 2001, Long Beach, CA.

6. Tsui, J., Fundamentals of Global Positioning System Receivers: A Software Approach, Wiley Interscience, 2004.

7. Thompson, E., Clem, N., Loos, T., and Renninger, I., Software-Defined GPS Receiver on USRPPlatform. Journal of Network and Computer Applications, 2012, vol. 35, no. 4, pp. 1352–1360.

8. Gavrilov, A.I., Programmnyi priemnik GLONASS (Software GLONASS Receiver), Inzhenernyi vestnik, 2012, no. 9, p. 16.

9. Bakholdin, V.S., Gerasimenko, I.S., Dobrikov, V.A. et al., Priem I obrabotka signalov pervogo navigatsionnogo sputnika sistemy “Galileo” (Receiving and Processing the Signals from the First Navigation Satellite of Galileo System), IAA RAS Journal, 2007, no. 17, pp. 148–156.

10. Avdeev, V.A., Bakholdin, V.S., Gavrilov, D.A. et al., Priem navigatsionnykh signalov s kodovym razdeleniem GNSS GLONASS v chastotnom diapazone L3 (Acceptance of Navigation Signals with Code Division GNSS GLONASS in Frequency Range L3), IAA RAS Jouirnal, 2012, no. 23, pp. 307–310.

11. Avdeev, V.A., Bakholdin, V.S., Gavrilov, D.A. et al., Programmnyi priem i obrabotka signalov navigatsionnoi sistemy “COMPASS” (Software-Based Receiving and Processing the Signals from COMPASS Navigation System), Izvestiya Vysshikh Uchebnykh Zavedenii. Priborostroenie, 2014, vol. 57, no. 3, pp. 40–43.

12. Bakholdin, V.S., Gavrilov, D.A., and Dobrikov, V.A., Programmnyi priem i obrabotka signalov indiiskoi regional’noi navigatsionnoi sputnikovoi sistemy v Sankt-Peterburge (Software-Based Receiving and Processing the Signals from Indian Regional Navigation Satellite System in St. Petersburg), Radiopromyshlennost’, 2016, no. 4, pp. 80–84.

13. Thombre, S., Zahidul, M., Bhuiyan, H., Sonderholm, S., Kirkko-Jaakkola, M., Ruotsalainen, L., and Kuusniemi, H., Tracking IRNSS Satellites for Multi-GNSS Positioning in Finland, Inside GNSS, 2014, no. 11–12, pp. 52–56.

14. Hein, G., Pany, T., Wallner, S., and Won, J.-H., Platforms for a Future GNSS Receiver, Inside GNSS, March 2006, pp. 56-62.

15. Liu, X., Kountouriotis, J., Petropulu, A., and Dandekar, K., ALOHA With Collision Resolution (ALOHA-CR): Theory and Software Defined Radio Implementation, IEEE Transactions on Signal Processing, 2010, vol. 58, no. 8, pp. 4396-4410.

16. Babu, R., Web-Based Resources on Software GPS Receivers, GPS Solutions, 2005, vol. 9, no. 3, pp. 240–242.

17. Gunawardena, S.A., Universal GNSS Software Receiver MATLAB Toolbox for Education and Research, Proceedings of the 26th International Technical Meeting of The Satellite Division of the Institute of Navigation, ION GNSS+, 2013.


Review

For citations:


Bakholdin V.S., Gavrilov D.A., Gerasimenko I.S., Dobrikov V.A., Ivanov V.F. Results of Software-Based Joint Processing of Signals from Global and Regional Navigation Satellite Systems. Giroskopiya i Navigatsiya. 2017;25(4):84-94. (In Russ.) https://doi.org/10.17285/0869-7035.2017.25.4.084-094

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ISSN 0869-7035 (Print)
ISSN 2075-0927 (Online)