Fu Yudi, Cheng Mengfan, Shao Weidong, Luo Hanwen, Li Di, Deng Lei, Yang Qi, Liu Deming
Opt Lett. 2021 Apr 1;46(7):1506-1509. doi: 10.1364/OL.421770.
We propose and numerically investigate a chaotic optical coherent secure communication scheme, which supports long-haul secure transmission for signals in advanced modulation formats. A hybrid optical chaos system is designed with coordination of digital and analog signals. The hybrid entropy source provides a broadband analog optical chaos signal, which could serve as the carrier to load quadrature amplitude modulation (QAM) data. Simultaneously, a digital binary signal generated from the entropy source is transmitted to establish long-haul chaotic synchronization. Coherent detection is utilized at the receiver, and a digital signal processing (DSP) algorithm is adopted to reduce transmission distortion. A 5 Gbaud 16QAM signal is encrypted by a phase chaos carrier with the effective bandwidth of 5.8 GHz. A bit error rate (BER) below forward error correction (FEC) can be achieved after transmitting over 1600 km based on digital-signal-induced chaos synchronization technology. Optimal launch power is investigated to minimize nonlinear effects of transmission links. System security is guaranteed by the high dynamical complexity of the chaotic source and the sensitive time delay as the secret key.
我们提出并对一种混沌光相干安全通信方案进行了数值研究,该方案支持采用先进调制格式的信号进行长距离安全传输。设计了一种数字和模拟信号协同的混合光混沌系统。混合熵源提供宽带模拟光混沌信号,可作为加载正交幅度调制(QAM)数据的载波。同时,将从熵源生成的数字二进制信号进行传输以建立长距离混沌同步。在接收器处采用相干检测,并采用数字信号处理(DSP)算法来减少传输失真。一个5 Gbaud的16QAM信号由有效带宽为5.8 GHz的相位混沌载波加密。基于数字信号诱导混沌同步技术,在传输超过1600 km后可实现低于前向纠错(FEC)的误码率(BER)。研究了最佳发射功率以最小化传输链路的非线性效应。混沌源的高动态复杂性和作为密钥的敏感时间延迟保证了系统安全。