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Security-enhanced chaos communication with time-delay signature suppression and phase encryption

机译:具有时间延迟签名抑制和相位加密的安全性增强的混沌通信

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摘要

A security-enhanced chaos communication scheme with time delay signature (TDS) suppression and phaseencrypted feedback light is proposed, in virtue of dual-loop feedback with independent high-speed phase modulation. We numerically investigate the property of TDS suppression in the intensity and phase space and quantitatively discuss security of the proposed system by calculating the bit error rate of eavesdroppers who try to crack the system by directly filtering the detected signal or by using a similar semiconductor laser to synchronize the link signal and extract the data. The results show that TDS embedded in the chaotic carrier can be well suppressed by properly setting the modulation frequency, which can keep the time delay a secret from the eavesdropper. Moreover, because the feedback light is encrypted, without the accurate time delay and key, the eavesdropper cannot reconstruct the symmetric operation conditions and decode the correct data. (C) 2016 Optical Society of America
机译:提出了一种具有时延签名(TDS)抑制和相位加密反馈光的安全性增强的混沌通信方案,该方案具有独立高速相位调制的双环反馈。我们通过数值研究TDS抑制在强度和相位空间中的特性,并通过计算试图通过直接过滤检测到的信号或使用类似的半导体激光器破解系统的窃听者的误码率,来定量地讨论所提议系统的安全性。同步链接信号并提取数据。结果表明,通过适当设置调制频率,可以很好地抑制嵌入混沌载波中的TDS,从而可以使时间延迟成为窃听者的秘密。此外,由于反馈光是加密的,因此没有准确的时间延迟和密钥,窃听者无法重构对称的操作条件并解码正确的数据。 (C)2016美国眼镜学会

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