Secure key real-time update and dynamic DNA encryption for CO-OFDM-PON based on a hybrid 5-D chaos

Yun Wang, Qi Zhang, Ran Gao, Xiangjun Xin, Rongzhen Xie, Jingkun Jiang, Feng Tian, Xinying Li, Fu Wang, Qinghua Tian, Zhipei Li, Yongjun Wang, Leijing Yang, Xiaolong Pan

科研成果: 期刊稿件文章同行评审

12 引用 (Scopus)

摘要

A double key (DK) real-time update and hybrid five-dimensional (5-D) hyperchaotic deoxyribonucleic acid (DNA) dynamic encryption scheme is proposed, which can ensure the security in the orthogonal frequency division multiplexing passive optical network (OFDM-PON). Chaotic sequences for DNA dynamic encryption are produced using a four-dimensional (4-D) hyperchaotic Lü system and a one-dimensional (1-D) logistic map. In this scheme, the DK consists of an external key set, which is stored locally, and an internal key, which is associated with the plaintext and external key. In addition, a pilot cluster is used as the carrier of key transmission and key embedding is achieved by converting key to phase information of the pilot. To verify the feasibility of the scheme, a simulation validation is performed on a 46.5Gb/s 16 quadrature amplitude modulation (QAM) coherent OFDM-PON system transmitted over an 80 km transmission distance. The results show that the proposed scheme can improve the security performance of OFDM-PON at a low OSNR cost of 0.3 dB and the key space is expanded to (8.514 × 10102)S. When the correlation redundancy (CR) G ≥ 7, the 0 bit error rate (BER) of key can be achieved and the key can be updated and distributed in real-time without occupying additional secure channels.

源语言英语
页(从-至)42961-42975
页数15
期刊Optics Express
31
26
DOI
出版状态已出版 - 18 12月 2023

指纹

探究 'Secure key real-time update and dynamic DNA encryption for CO-OFDM-PON based on a hybrid 5-D chaos' 的科研主题。它们共同构成独一无二的指纹。

引用此

Wang, Y., Zhang, Q., Gao, R., Xin, X., Xie, R., Jiang, J., Tian, F., Li, X., Wang, F., Tian, Q., Li, Z., Wang, Y., Yang, L., & Pan, X. (2023). Secure key real-time update and dynamic DNA encryption for CO-OFDM-PON based on a hybrid 5-D chaos. Optics Express, 31(26), 42961-42975. https://doi.org/10.1364/OE.495626