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Joint PAPR Reduction and Physical Layer Security Enhancement in OFDMA-PON

机译:OFDMA-PON中联合降低PAPR和增强物理层安全性

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摘要

For joint peak-to-average power ratio (PAPR) reduction and physical layer security enhancement, we propose a chaos IQ-encryption-based optimal frame transmission technique in an orthogonal frequency-division multiple access-based passive optical network (OFDMA-PON). The chaos IQ-encryption technique is utilized to enhance the physical layer security. In encrypting, the in-phase (I) and quadrature-phase (Q) parts of the quadrature amplitude modulation (QAM) symbols are coded with two phase sequences separately, which are generated using a 2-D logistic map. The encrypted OFDM symbols comprise an OFDM frame, and the frame with the minimum PAPR is transmitted to the optical network unit side. Thus, the transmitted OFDM signal is of a joint low PAPR and high physical layer security. In the demonstration, an 11.32-Gb/s encrypted 16 QAM OFDM signal has been experimentally transmitted over 25-km standard single mode fiber in an intensity-modulation/direct-detection OFDMA-PON.
机译:为了联合降低峰均功率比(PAPR)和增强物理层安全性,我们提出了一种在正交频分多址无源光网络(OFDMA-PON)中基于混沌IQ加密的最佳帧传输技术。混乱的IQ加密技术被用来增强物理层的安全性。在加密中,正交幅度调制(QAM)符号的同相(I)和正交相位(Q)部分分别用两个相位序列编码,这两个相位序列是使用二维逻辑图生成的。加密的OFDM符号包括OFDM帧,并且具有最小PAPR的帧被发送到光网络单元侧。因此,所发送的OFDM信号具有共同的低PAPR和高物理层安全性。在演示中,已在强度调制/直接检测OFDMA-PON的25公里标准单模光纤上通过实验传输了11.32 Gb / s加密的16 QAM OFDM信号。

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