Li Mingye, Liu Bo, Ullah Rahat, Ren Jianxin, Mao Yaya, Han Shun, Zhao Jianye, Tang Rong, Chen Shuaidong, Ling Jing
Opt Lett. 2020 Sep 1;45(17):4960-4963. doi: 10.1364/OL.402734.
In this Letter, a novel five-dimensional (5D) data-iteration-based encryption model is proposed at physical layer for multi-wavelength optical frequency division multiplexing passive optical network (OFDM-PON) by using a hyperchaotic system. The proposed scheme can generate five chaotic sequences at a time. The sensitivity of 10 can be achieved, along with a key space of 10. In addition, we use a multi-wavelength channel to transmit the information, and the optical network unit can freely choose the wavelength. The probability shaping technology has greatly improved the bit error rate performance. A 16// data is successfully transmitted across 25 km standard single-mode fiber in the experimental verifications. Therefore, it will have a positive impact in the future security optical network.
在本信函中,提出了一种基于五维(5D)数据迭代的加密模型,该模型用于物理层的多波长光频分复用无源光网络(OFDM-PON),采用了超混沌系统。所提方案一次可生成五个混沌序列。能实现10的灵敏度以及10的密钥空间。此外,我们使用多波长信道来传输信息,光网络单元可自由选择波长。概率整形技术极大地改善了误码率性能。在实验验证中,16//数据成功通过25公里标准单模光纤进行了传输。因此,它将对未来的安全光网络产生积极影响。