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首页> 外文期刊>Computers & Digital Techniques, IET >Practical realisation of a return map immune Lorenz-based chaotic stream cipher in circuitry
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Practical realisation of a return map immune Lorenz-based chaotic stream cipher in circuitry

机译:电路中基于返回图免疫Lorenz混沌流密码的实际实现

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摘要

The authors report on the realisation of an encryption process in real-time analogue circuitry using on-the-shelf components and minimal processing power. Self-synchronisation of two similar systems through a single shared state is a unique property of the chaotic Lorenz attractor system. In this process, the single parameters of the system are modulated to mask a message before transmitting securely through a single-shared state. However, these techniques are vulnerable to the return map attack. They show that time-scaling can further obfuscate the modulation process and improve return map attack immunity and demonstrate a fabricated printed circuit board implementation of the system.
机译:作者报告了使用现成的组件和最小的处理能力在实时模拟电路中实现加密过程的情况。通过一个共享状态对两个类似系统进行自同步是混沌Lorenz吸引子系统的独特属性。在此过程中,系统的单个参数被调制为在通过单共享状态安全地传输之前屏蔽消息。但是,这些技术容易受到返回映射攻击的影响。他们表明,时间标度可以进一步使调制过程变得模糊,并提高返回图的抗扰性,并演示了系统的预制印刷电路板实现。

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