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基于功率分割复用的四维区域联合加密的高安全性光 OFDM 传输方案。

High security optical OFDM transmission scheme with four-dimensional region joint encryption based on power division multiplexing.

出版信息

Opt Express. 2023 Apr 24;31(9):14673-14684. doi: 10.1364/OE.488208.

Abstract

In this paper, a high security chaotic encryption scheme for orthogonal frequency division multiplexing (OFDM) transmission system is proposed by using power division multiplexing (PDM) technology and four-dimensional region joint encryption. The scheme uses PDM to realize simultaneous transmission of multiple user information, which can achieve a good compromise among system capacity, spectral efficiency and user fairness. In addition, bit cycle encryption, constellation rotation disturbance (CRD) and region joint constellation disturbance (RJCD) are used to realize four-dimensional region joint encryption, effectively improving the physical layer security. The masking factor is generated by the mapping of two-level chaotic systems, which can enhance the nonlinear dynamics and improve the sensitivity of encrypted system. A 11.76 Gb/s OFDM signal transmission over 25 km standard single-mode fiber (SSMF) is experimentally demonstrated. At the forward-error correction (FEC) bit error rate (BER) limit -3.8×10, the proposed receiver optical power based on quadrature phase shift keying (QPSK) without encryption, QPSK with encryption, variant-8quadrature amplitude modulation (V-8QAM) without encryption and V-8QAM with encryption are about -13.5dBm, -13.6dBm, -12.2dBm, and -12.1dBm. The key space is up to 10. The results show that this scheme not only improves the security of the system and the ability to resist attackers, but also improves the system capacity and has the potential to serve more users. It has a good application prospect in the future optical network.

摘要

本文提出了一种基于功率分割复用(PDM)技术和四维区域联合加密的正交频分复用(OFDM)传输系统的高安全性混沌加密方案。该方案利用 PDM 技术实现多用户信息的同时传输,在系统容量、频谱效率和用户公平性之间取得良好的折衷。此外,采用位循环加密、星座旋转干扰(CRD)和区域联合星座干扰(RJCD)实现四维区域联合加密,有效提高了物理层安全性。掩蔽因子由两级混沌系统的映射生成,可增强加密系统的非线性动力学和提高加密系统的灵敏度。通过实验验证了在 25km 标准单模光纤(SSMF)上传输 11.76Gb/s 的 OFDM 信号。在前向纠错(FEC)误码率(BER)限为-3.8×10时,基于正交相移键控(QPSK)的无加密、QPSK 加密、变体-8 正交幅度调制(V-8QAM)无加密和 V-8QAM 加密的接收光功率分别约为-13.5dBm、-13.6dBm、-12.2dBm 和-12.1dBm。密钥空间高达 10。结果表明,该方案不仅提高了系统的安全性和抵御攻击者的能力,而且提高了系统容量,具有为更多用户提供服务的潜力。在未来的光网络中具有良好的应用前景。

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