Welcome to Francis Academic Press

International Journal of Frontiers in Engineering Technology, 2022, 4(3); doi: 10.25236/IJFET.2022.040310.

Research on Correlation Peak Distortion Detection Method of Satellite Navigation Signal

Author(s)

Hongxiao Li

Corresponding Author:
Hongxiao Li
Affiliation(s)

Civil Aviation Air Traffic Control Technology Equipment Development Co. Ltd. Beijing, China

Abstract

Correlation peak distortion is an important part of signal quality monitoring (SQM) correlation domain research, in which correlation peak distortion detection plays an important role in the traceability of abnormal satellite navigation signals. In this paper, the GPS navigation signal data is processed, and the actual correlation peak distortion range is obtained by using the idea of multi-correlator accumulation and averaging, and the detection of the navigation signal correlation peak distortion is realized by comparing the ideal correlation peak. The correlation peak distortion detection method proposed in this paper can realize the rapid detection of correlation peak distortion, and provide a new idea for the research of correlation peak distortion detection.

Keywords

Correlation peak distortion, Signal Quality Monitoring, Abnormal navigation signal, Global Positioning System

Cite This Paper

Hongxiao Li. Research on Correlation Peak Distortion Detection Method of Satellite Navigation Signal. International Journal of Frontiers in Engineering Technology (2022), Vol. 4, Issue 3: 73-78. https://doi.org/10.25236/IJFET.2022.040310.

References

[1] Weiyu Gao, Hong Li, Mingquan Lu. A New Testing Method Monitoring Correlation Peak Distortions and Its Application on Spoofing Detection [C]. The 11th China Satellite Navigation Annual Conference, 2020: 83-89.

[2] Chengtao Xu, Yong Wang, Xiaomei Tang, Yingxue Su, Feixue Wang.Modernized GNSS signal abnormality model and Evil signal detection technique [C]. Proceedings of the 5th China Satellite Navigation Academic Annual Conference, 2014: 141-146.

[3] Ruihua Liu, Qingtian Zhao, Xiaoping Lv, Baoguo Yu, Zhaodong Xing. Research on Digital Distortion of Signal in Space for Beidou Satellite Navigation System [J]. Aerospace control, 2016, 34(02): 38-43.

[4] Ruihua Liu, Qingtian Zhao, Yingchao Chen, Yueming Kong. Research on Analog Distortion of Signal in Space for Beidou Satellite Navigation System [J]. Journal of Astronautic Metrology and Measurement, 2016, 36(04): 89-94.

[5] Phelts R E, Multicorrelator techniques for robust mitigation of threats to GPS signal quality [D], Standford University, Palo Alto, Calif, USA, 2001.

[6] Thevenon P, Julien O, Tessier Q, et al. Detection Performances of Evil Waveform Monitors for the GPS L5 Signal [J]. Ion GNSS International Technical Meeting of the Satellite Division of the Institute of Navigation, 2014.

[7] M. Gamba, B. Motella, M. Pini. Statistical test applied to detect distortions of GNSS signals [C]// International Conference on Localization and GNSS, 2013.

[8] G. Xie. Principles of GPS and Receiver Design [M]. Beijing: Publishing House of Electronic Industry, 2009.

[9] Cavaleri A, Motella B, Pini M, et al. Detection of spoofed GPS signals at code and carrier tracking level [C]. Satellite Navigation Technologies and European Workshop on GNSS Signals and Signal Processing (NAVITEC), 2010 5th ESA Workshop on, IEEE, 2011.

[10] Y. Yang, H. Li, M. Lu. Performance Assessment of Signal Quality Monitoring Based GNSS Spoofing Detection Techniques [C]// China Satellite Navigation Conference, 2015.