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首页> 外文期刊>Chinese physics letters >A Spatiotemporal-Chaos-Based Cryptosystem Taking Advantage of Both Synchronous and Self-Synchronizing Schemes
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A Spatiotemporal-Chaos-Based Cryptosystem Taking Advantage of Both Synchronous and Self-Synchronizing Schemes

机译:基于时空混沌的密码系统,利用同步和自同步方案

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摘要

Two-dimensional one-way coupled map lattices are used for cryptography where multiple space units produce chaotic outputs in parallel. One of the outputs plays the role of driving for synchronization of the decryption system while the others perform the function of information encoding. With this separation of functions the receiver can establish a self-checking and self-correction mechanism, and enjoys the advantages of both synchronous and self-synchronizing schemes. A comparison between the present system with the system of advanced encryption standard (AES) is presented in the aspect of channel noise influence. Numerical investigations show that our system is much stronger than AES against channel noise perturbations, and thus can be better used for secure communications with large channel noise.
机译:二维单向耦合映射晶格用于加密,其中多个空间单元并行产生混沌输出。其中一个输出起到驱动解密系统同步的作用,而其他输出则执行信息编码的功能。通过这种功能分离,接收器可以建立自检和自校正机制,并享有同步和自同步方案的优点。在信道噪声影响方面提出了本系统与高级加密标准(AES)系统之间的比较。数值研究表明,我们的系统在信道噪声干扰方面比AES强得多,因此可以更好地用于具有大信道噪声的安全通信。

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