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Quantum-secured LiDAR with Gaussian modulated coherent states. | LitMetric

AI Article Synopsis

  • LiDAR systems using classical signals are vulnerable to spoofing attacks that help targets avoid detection.
  • A new quantum-secured LiDAR protocol employs Gaussian modulated coherent states for more accurate range measurement and the ability to detect such spoofing attempts.
  • Simulation results show that this method effectively identifies spoofing with high accuracy and low false alarms, making it a practical solution using current technology.

Article Abstract

LiDAR systems that rely on classical signals are susceptible to intercept-and-recent spoofing attacks, where a target attempts to avoid detection. To address this vulnerability, we propose a quantum-secured LiDAR protocol that utilizes Gaussian modulated coherent states for both range determination and spoofing attack detection. By leveraging the Gaussian nature of the signals, the LiDAR system can accurately determine the range of the target through cross-correlation analysis. Additionally, by estimating the excess noise of the LiDAR system, the spoofing attack performed by the target can be detected, as it can introduce additional noise to the signals. We have developed a model for target ranging and security check, and conducted numerical simulations to evaluate the Receiver Operating Characteristic (ROC) of the LiDAR system. The results indicate that an intercept-and-recent spoofing attack can be detected with a high probability at a low false-alarm rate. Furthermore, the proposed method can be implemented using currently available technology, highlighting its feasibility and practicality in real-world applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11437105PMC
http://dx.doi.org/10.1038/s41598-024-72804-2DOI Listing

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