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Integrated deceptive sensing and secure communication scheme based on RSC-OFDM in a photonics-assisted 100 GHz

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    This study introduces a novel secure communication and deceptive sensing method using random subcarrier orthogonal frequency-division multiplexing (RSC-OFDM) in millimeter-wave systems. The integrated approach enhances system security and achieves precise sensing with distance deception capabilities.

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    Area of Science:

    • Photonics-assisted wireless communication
    • Signal processing and security

    Background:

    • Millimeter-wave (MMW) systems offer high bandwidth but face security challenges.
    • Existing secure communication methods often do not integrate sensing functionalities.
    • Deceptive sensing is crucial for advanced security applications.

    Purpose of the Study:

    • To propose an integrated scheme for deceptive sensing and secure communication in MMW systems.
    • To enhance system security by disturbing transmitting signals and employing sensing-aided encryption.
    • To achieve precise sensing with distance deception capabilities.

    Main Methods:

    • Utilizing random subcarrier (RSC) orthogonal frequency-division multiplexing (OFDM) for signal disturbance and deception.
    • Implementing chaotic encryption at bit and constellation levels.
    • Designing sensing-aided dynamic parameter (DP) encryption using sensing information as a random seed.
    • Experimental validation in a 100 GHz MMW system over a 1.2 m wireless channel.

    Main Results:

    • Successful transmission of RSC-OFDM signals integrating deceptive sensing and secure communication.
    • Demonstrated improvement in system security while maintaining bit error rate performance.
    • Achieved a data rate of up to 7.69 G bit/s.
    • Obtained centimeter-level sensing resolution and millimeter-level accuracy.
    • Successfully achieved distance deception ranging from 0.25 m to 8.03 m for a 1.2 m target.

    Conclusions:

    • The proposed integrated scheme effectively enhances the security of MMW systems.
    • The combination of deceptive sensing and secure communication is feasible and beneficial.
    • The scheme offers high data rates, precise sensing, and effective distance deception.