Real-Time Rejection and Mitigation of Time Synchronization Attacks on the Global Positioning System
February 05, 2018 Β· Declared Dead Β· π IEEE transactions on industrial electronics (1982. Print)
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Authors
Ali Khalajmehrabadi, Nikolaos Gatsis, David Akopian, Ahmad F. Taha
arXiv ID
1802.01649
Category
eess.SY: Systems & Control (EE)
Cross-listed
cs.CR,
eess.SP,
math.OC
Citations
42
Venue
IEEE transactions on industrial electronics (1982. Print)
Last Checked
6 months ago
Abstract
This paper introduces the Time Synchronization Attack Rejection and Mitigation (TSARM) technique for Time Synchronization Attacks (TSAs) over the Global Positioning System (GPS). The technique estimates the clock bias and drift of the GPS receiver along with the possible attack contrary to previous approaches. Having estimated the time instants of the attack, the clock bias and drift of the receiver are corrected. The proposed technique is computationally efficient and can be easily implemented in real time, in a fashion complementary to standard algorithms for position, velocity, and time estimation in off-the-shelf receivers. The performance of this technique is evaluated on a set of collected data from a real GPS receiver. Our method renders excellent time recovery consistent with the application requirements. The numerical results demonstrate that the TSARM technique outperforms competing approaches in the literature.
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