Jiang Lin, Pan Yan, Yi Anlin, Feng Jiacheng, Pan Wei, Yi Lilin, Hu Weisheng, Wang Anbang, Wang Yuncai, Qin Yuwen, Yan Lianshan
Opt Express. 2021 Apr 12;29(8):12750-12762. doi: 10.1364/OE.423098.
Recent demonstrations of chaos-based secure communication have proven the feasibility of secured transmission of high-speed (tens of Gbit/s) signals over certain distances (∼100-km), which bring hope for secure communication from theoretical analysis to practical applications. So far, the chaos-based secure communication system with chaos-masking (CMS) encryption is considered as one of the most important and feasible schemes. In this paper, an optical chaotic carrier generated by an opto-electronic oscillator is used to encrypt 112-Gbit/s message by CMS encryption for data transmission over a 1040-km single-mode-fiber. The message is successfully decrypted by combining coherent detection and our proposed blind decryption algorithms, which can successfully separate the chaotic carrier and the message with the bit-error-rate (BER) below the forward error correction (FEC) threshold. Experimental results show that the coherent detection combined digital signal processing algorithms may be a possible way to promote the practical applications of chaotic optical communication in the future. In addition, this paper reveals that the security of the CMS encryption may be not high enough for those systems requiring rigorous confidentiality. Subsequently, we further discuss the bottlenecks encountered in current high-speed chaotic optical communication systems and analyze how to improve and weight the security and practicability.
最近基于混沌的安全通信演示已经证明了在一定距离(约100公里)上高速(数十吉比特每秒)信号安全传输的可行性,这为从理论分析到实际应用的安全通信带来了希望。到目前为止,具有混沌掩码(CMS)加密的基于混沌的安全通信系统被认为是最重要且可行的方案之一。在本文中,由光电振荡器产生的光混沌载波用于通过CMS加密对112吉比特每秒的消息进行加密,以便在1040公里的单模光纤上进行数据传输。通过结合相干检测和我们提出的盲解密算法成功解密了该消息,该算法能够以低于前向纠错(FEC)阈值的误码率(BER)成功分离混沌载波和消息。实验结果表明,相干检测结合数字信号处理算法可能是未来推动混沌光通信实际应用的一种可行方法。此外,本文揭示了对于那些要求严格保密性的系统,CMS加密的安全性可能不够高。随后,我们进一步讨论了当前高速混沌光通信系统中遇到的瓶颈,并分析了如何提高和权衡安全性与实用性。