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On Stochastic Performance Analysis of Secure Integrated Sensing and Communication Networks

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arxiv 2504.09674 v1 pith:RA2OZHHS submitted 2025-04-13 cs.IT eess.SPmath.IT

classification cs.ITeess.SPmath.IT
keywords sensingtargetcommunicationeavesdropperperformanceergodicintegratedlocation
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This paper analyzes the stochastic security performance of a multiple-input multiple-output (MIMO) integrated sensing and communication (ISAC) system in a downlink scenario. A base station (BS) transmits a multi-functional signal to simultaneously communicate with a user, sense a target angular location, and counteract eavesdropping threats. The system includes a passive single-antenna communication eavesdropper and a multi-antenna sensing eavesdropper attempting to infer the target location. The BS-user and BS-eavesdroppers channels follow Rayleigh fading, while the target azimuth angle is uniformly distributed. To evaluate the performance, we derive exact expressions for the secrecy ergodic rate and the ergodic Cramer-Rao lower bound (CRB) for target localization at both the BS and the sensing eavesdropper. This involves computing the probability density functions (PDFs) of the signal-to-noise ratio (SNR) and CRB, leveraging the central limit theorem for tractability. Numerical results validate our findings.

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  1. Secure Integrated Sensing and Communication Networks: Stochastic Performance Analysis

    cs.IT 2025-07 conditional novelty 6.0 of 10

    Closed-form expressions for secrecy rate, radar angle-estimation error, and estimation outage for two secure ISAC beamforming schemes in a fading MIMO downlink.

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