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Quality Analysis of Space and Space-Frequency Adaptive Signal Processing Algorithms in Satellite Navigation Systems

https://doi.org/10.31854/1813-324X-2022-8-3-37-43

Abstract

The problem of interference mitigation in satellite navigation signals is considered. Construction algorithms for space- and space-frequency adaptive filters are described. The processing of real satellite signals with broadband interference by means of the constructed filters is carried out in MATLAB. As a result of comparing different processing quality indicators, the most efficient filtering algorithms are identified.

About the Authors

E. Glushankov
The Bonch-Bruevich Saint-Petersburg State University of Telecommunications
Russian Federation

Evgeniy Glushankov

St. Petersburg, 193232



V. Tsarik
Airtago, LLC
Russian Federation

Vladimir Tsarik

St. Petersburg, 197375



References

1. Xu H., Cui X., Lu M. An SDR-Based Real-Time Testbed for GNSS Adaptive Array Anti-Jamming Algorithms Accelerated by GPU. Sensors. 2016;16(3):356. DOI:10.3390/s16030356

2. Sklar J.R. Interference Mitigation Approaches for the Global Positioning System. Lincoln Laboratory Journal. 2003. Vol. 14. Iss. 2. PP. 167‒180.

3. Van Trees H.L. Optimum Array Processing. Part IV of Detection, Estimation and Modulation Theory. NewYork: John Wiley & Sons; 2002.

4. Glushankov E.I., Kirik D.I., Kirsanov D.M., Rylov E.A. Adaptation of antenna arrays with using correlation matrices of a special types. Proceedings of the Conference on Systems of Signal Synchronization, Generating and Processing in Telecommunications, SYNCHROINFO, 30 June‒02 July 2021, Kaliningrad, Russia. IEEE; 2021. DOI:10.1109/SYNCHROINFO51390.2021.9488331

5. Voevodin V.V., Tyrtyshnikov E.E. Calculation Processes with Toeplitz Matrices. Moscow: Nauka Publ.; 1987. 320 p. (in Russ.)

6. Dzhigan V.I. Adaptive Signal Processing: Theory and Algorithms. Moscow: Tekhnosfera Publ.; 2013. 528 p. (in Russ.)

7. Malozyomov V.N., Masharskiy S.M. Foundations of Discrete Harmonic Analysis. St. Petersburg: Lan’ Publ.; 2012. 304 p. (in Russ.)

8. Melvin W.L. A STAP overview. IEEE Aerospace and Electronic Systems Magazine. 2004;19(1):19‒35. DOI:10.1109/MAES. 2004.1263229

9. Borre K., Akos D.M., Bertelsen N., Rinder P., Jensen S.H. A Software-Defined GPS and Galileo Receiver. A Single-Frequency Approach. Boston: Birkhäuser; 2007. 176 p.

10. Sharawi M.S., Akos D.M., Aloi D.N. GPS C/N0 estimation in the presence of interference and limited quantization levels. IEEE Transactions on Aerospace and Electronic Systems. 2007;43(1):227‒238. DOI:10.1109/TAES.2007.357129


Review

For citations:


Glushankov E., Tsarik V. Quality Analysis of Space and Space-Frequency Adaptive Signal Processing Algorithms in Satellite Navigation Systems. Proceedings of Telecommunication Universities. 2022;8(3):37-43. (In Russ.) https://doi.org/10.31854/1813-324X-2022-8-3-37-43

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ISSN 1813-324X (Print)
ISSN 2712-8830 (Online)