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Large Scale Energy Efficient Sensor Network Routing Using a Quantum Processor Unit
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Efficient Multidimensional Pipelined Chaotic Bulk-Codewords-Encryption for Cloud Control Systems.

Yasir Ali, Tayyab Manzoor, Huan Yang

    IEEE Transactions on Cybernetics
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    This study presents a novel encryption method for cloud control systems (CCSs) using chaotic Lorenz maps to secure physical layer communications over optical networks. The technique enhances data security and resilience against attacks.

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    Area of Science:

    • Cybersecurity
    • Optical Communications
    • Applied Mathematics

    Background:

    • Cloud control systems (CCSs) require secure communication channels for critical remote tasks.
    • Physical layer security is crucial for protecting data transmitted over optical fiber networks.

    Purpose of the Study:

    • To introduce an efficient encryption mechanism for securing physical layer communication in CCSs.
    • To leverage chaotic properties for robust multidimensional encryption and confidentiality.

    Main Methods:

    • Utilizing the Lorenz map for generating chaotic keys.
    • Employing pipelined successive cancellation polar encoding for codeword arrangement.
    • Implementing reindexing of codewords and subcarrier remapping in the constellation map.

    Main Results:

    • Demonstrated promising levels of security and resilience against physical layer threats.
    • Evaluated computational efficiency, security robustness, and resistance to noise and distortion.
    • Validated compatibility for seamless integration into existing CCSs infrastructure.

    Conclusions:

    • The proposed encryption scheme offers a resilient solution for securing critical physical layer transmissions in CCSs.
    • The use of chaotic Lorenz maps enhances security against brute-force attacks.