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基于电光混合反馈系统的稳健混沌键控方案。

Robust chaotic-shift-keying scheme based on electro-optical hybrid feedback system.

作者信息

Gao Xiaojing, Cheng MengFan, Deng Lei, Zhang Minming, Fu Songnian, Liu Deming

出版信息

Opt Express. 2020 Apr 13;28(8):10847-10858. doi: 10.1364/OE.389251.

Abstract

A chaotic-shift-keying (CSK) scheme is designed based on a chaos system with electro-optical hybrid time delayed feedback structure. By switching the time delay parameter as a message feeding method, the generated chaotic signal is no longer suffered from return map attack, which is an innate vulnerability of traditional CSK. When the coupling of the seed electrical chaotic system and the nonlinear optical time delay feedback loop is carefully weighed, this CSK scheme shows a good robustness in terms of handling noise for transmitting digital signals. By demodulating the digital signals with the chaotic coherent detection method, a bit error rate of 6×10 is achieved at the signal-to-noise ratio of 10dB in the simulation. The proposed method has a promising application prospect in some harsh environments.

摘要

基于具有电光混合时间延迟反馈结构的混沌系统设计了一种混沌移键控(CSK)方案。通过切换时间延迟参数作为消息馈送方法,所生成的混沌信号不再遭受返回映射攻击,而返回映射攻击是传统CSK固有的弱点。当仔细权衡种子电混沌系统与非线性光学时间延迟反馈回路的耦合时,该CSK方案在处理传输数字信号的噪声方面表现出良好的稳健性。通过使用混沌相干检测方法解调数字信号,在仿真中,在信噪比为10dB时实现了6×10的误码率。该方法在一些恶劣环境中具有广阔的应用前景。

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