混乱的
反馈回路
计算机科学
稳健性(进化)
同步(交流)
光通信
非正面反馈
安全通信
联轴节(管道)
控制理论(社会学)
物理
混沌同步
半导体激光器理论
加密
光学混沌
正面反馈
相(物质)
差速器(机械装置)
差分相位
光电子学
拓扑(电路)
信号(编程语言)
环路增益
通信系统
功能(生物学)
偏压
微分增益
波形
电子工程
相位响应
相位同步
过程(计算)
传递函数
非线性系统
时滞微分方程
作者
Keyuan Mo,Zhaoyun Li,Yugang Huang,Ruian Zhao,Zhiyong Tao,Yaxian Fan
标识
DOI:10.1117/1.oe.65.2.028102
摘要
Addressing the issue of increasingly complex structures in current optoelectronic feedback chaotic secure communication systems designed to suppress time-delay characteristics, we propose a chaotic secure communication system based on optoelectronic differential coupling phase feedback, which holds promise for overcoming the aforementioned limitations. In this system, all-optical chaos is injected into the classical optoelectronic phase feedback loop through optoelectronic conversion, and it is differentially coupled with the chaotic signal of the feedback loop, enhancing the complexity of the system’s chaotic carrier and effectively masking the delay characteristics of the optoelectronic phase feedback loop. The simulation results show that when the feedback gain is less than 1 based on the optoelectronic differential coupling phase feedback system, a delay-free chaotic output can be realized, which can effectively prevent the eavesdropper from cracking the encrypted information. When the system feedback parameter β=5 and the mismatch range of the time-delay T2 in the all-optical chaotic branch are within 30 ps, the cross-correlation function value can still remain above 0.9, and its change with the feedback parameter is not significant. In addition, when the mismatch of the delay parameters T1 and δT in the optoelectronic phase feedback loop exceeds 10 ps, the cross-correlation function value drops below 0.6 and varies significantly with changes in the feedback parameters. This indicates that introducing all-optical chaos has a little impact on system synchronization while effectively concealing the delay parameters of the optoelectronic feedback loop, offering high robustness and security.
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