A Stackelberg-Bayesian game combined with memory-based Q-learning detects a malicious receiver in a simulated 6G urban network with 69% accuracy and optimizes beamforming.
Secure Integrated Sensing and Communication: Information Theory Offers Insights
2 Pith papers cite this work. Polarity classification is still indexing.
abstract
Integrated sensing and communication (ISAC) combines sensing and communication within a shared system framework by using the same transmitted signal for both objectives. ISAC can improve the efficiency of spectrum and hardware use but also gives rise to new security challenges, as users associated with one function may need to be prevented from inferring information related to the other. This paper surveys information-theoretic approaches to secure ISAC with emphasis on formulations, performance metrics, and fundamental limits. We first review the information-theoretic ISAC models that underlie secure formulations. We then organize the secure ISAC literature according to the protected functionality and the adversary model, covering secure communication, sensing security, and active-adversary settings such as jamming. We also discuss formulations in which communication security and sensing security interact more directly, as well as their connections to privacy and covert communication. Throughout, we highlight the main modeling assumptions and the insights they provide on the tradeoffs among communication reliability, sensing performance, and security.
fields
cs.IT 2years
2026 2representative citing papers
This review organizes ISAC privacy challenges in 6G into location/environment, behavioral, and physiological sensing levels and outlines solution directions.
citing papers explorer
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6G Sensing Security: Distributed Game-Theoretic RL for Urban Beamforming and Attacker Detection
A Stackelberg-Bayesian game combined with memory-based Q-learning detects a malicious receiver in a simulated 6G urban network with 69% accuracy and optimizes beamforming.
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ISAC Privacy: Challenges and Solutions for 6G
This review organizes ISAC privacy challenges in 6G into location/environment, behavioral, and physiological sensing levels and outlines solution directions.