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http://dx.doi.org/10.11003/JPNT.2015.4.4.173

Design and Performance Evaluation of GPS Spoofing Signal Detection Algorithm at RF Spoofing Simulation Environment  

Lim, Soon (Satellite Navigation Team, Korea Aerospace Research Institute)
Lim, Deok Won (Satellite Navigation Team, Korea Aerospace Research Institute)
Chun, Sebum (Satellite Navigation Team, Korea Aerospace Research Institute)
Heo, Moon Beom (Satellite Navigation Team, Korea Aerospace Research Institute)
Choi, Yun Sub (Department of Electronics Engineering, Chungnam National University)
Lee, Ju Hyun (Department of Electronics Engineering, Chungnam National University)
Lee, Sang Jeong (Department of Electronics Engineering, Chungnam National University)
Publication Information
Journal of Positioning, Navigation, and Timing / v.4, no.4, 2015 , pp. 173-180 More about this Journal
Abstract
In this study, an algorithm that detects a spoofing signal for a GPS L1 signal was proposed, and the performance was verified through RF spoofing signal simulation. The proposed algorithm determines the reception of a spoofing signal by detecting a correlation distortion of GPS L1 C/A code caused by the spoofing signal. To detect the correlation distortion, a detection criterion of a spoofing signal was derived from the relationship among the Early, Prompt, and Late tap correlation values of a receiver correlator; and a detection threshold was calculated from the false alarm probability of spoofing signal detection. In this study, an RF spoofing environment was built using the GSS 8000 simulator (Spirent). For the RF spoofing signal generated from the simulator, the RF spoofing environment was verified using the commercial receiver DL-V3 (Novatel Inc.). To verify the performance of the proposed algorithm, the RF signal was stored as IF band data using a USRP signal collector (NI) so that the data could be processed by a CNU software receiver (software defined radio). For the performance of the proposed algorithm, results were obtained using the correlation value of the software receiver, and the performance was verified through the detection of a spoofing signal and the detection time of a spoofing signal.
Keywords
GPS spoofing; Spoofing signal detection; Software defined radio;
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Times Cited By KSCI : 1  (Citation Analysis)
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