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Joint Encryption Scheme Based on the Chaotic DCT Matrix and SLM Algorithm in an OFDM-PON System

机译:基于混沌DCT矩阵和SLM算法在OFDM-PON系统中的联合加密方案

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In order to effectively solve the problem of data transmission security and peak-to-average ratio (PAPR) in an orthogonal frequency division multiplexing passive optical network (OFDM-PON) transmission system, in this paper, a joint encryption scheme of discrete cosine transform (DCT) and selective mapping (SLM) based on chaotic mapping is proposed. In this scheme, the chaotic sequence of a 3D Lorenz chaotic system is used as the row and column index of the DCT matrix and the phase factor of SLM to resist selective plaintext attack, and the system encryption is realized while reducing PAPR. The theoretical analysis and numerical simulation show that the common OFDM-PON, the proposed algorithm, can obtain a PAPR suppression gain of ~4.8?dB and improve the receiver sensitivity by ~4?dB . In addition, it shows that, with the increase of row/column index mismatch of the DCT matrix, the bit error rate of the system increases gradually. An encrypted data transmission of 8?GB/s 16-QAM optical OFDM signals is successfully simulated over a 20?km standard single-mode fiber, which proves the excellent confidentiality of the proposed secure transmission.
机译:为了有效地解决数据传输安全性和峰平均比(PAPR)的正交频分复用无源光网络(OFDM-PON)传输系统的问题,在本文中,是分立余弦变换的联合加密方案(DCT)和基于混沌映射的选择性映射(SLM)是基于混沌映射的。在该方案中,3D LORENZ混沌系统的混沌序列用作DCT矩阵的行和列索引和用于抵抗选择性明文攻击的SLM的相位因子,并且在减少PAPR的同时实现系统加密。理论分析和数值模拟表明,常见的OFDM-PON,所提出的算法,可以获得PAPR抑制增益〜4.8≤DB,提高接收器灵敏度〜4?DB。另外,它表明,随着DCT矩阵的行/列指数不匹配的增加,系统的误码率逐渐增加。在20 km标准的单模光纤上成功模拟了8·GB / S 16-QAM光学OFDM信号的加密数据传输,这证明了所提出的安全传输的优异机密性。

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