Song Xiumin, Liu Bo, Bai Yu, Chen Shuaidong, Ren Jianxin, Mao Yaya, Zhang Hongxin, Wu Xiangyu, Wu Yongfeng, Xin Xiangjun
Opt Lett. 2022 Oct 15;47(20):5293-5296. doi: 10.1364/OL.471658.
In this Letter, we propose a novel, to the best of our knowledge, way to reduce the peak to average power ratio (PAPR) based on the selective mapping-partial transmit sequence (SLM-PTS) method, which uses chaotic sequences to give rise to random phases and random split positions. For the first time, the public and private keys are both used for encryption in the sparse code multiple access-orthogonal frequency division multiplexing (SCMA-OFDM) system. The public keys are used for improvement of the PAPR while the private keys show great promises in the protection of the privacy for different users. Meanwhile, the accurate phases and split positions at the receiver can be easily obtained by transmitting the initial values and parameters of the 3D Lorenz chaotic system simplifying the transmission of the sideband information significantly with the key space of nearly 10. In addition, the transmission of 42-Gb/s encrypted SCMA-OFDM signals have been experimentally demonstrated over a 2-km seven-core fiber, showing that the proposed scheme could improve the receiver sensitivity by 1.0 dB compared with the traditional SCMA-OFDM signals due to the great reduction in the PAPR. The bit error rate of the illegal optical network unit remains near 0.5, verifying the high security of the transmitted message.
在本信函中,据我们所知,我们提出了一种基于选择性映射部分传输序列(SLM - PTS)方法来降低峰均功率比(PAPR)的新颖方法,该方法使用混沌序列来产生随机相位和随机分割位置。首次在稀疏码多址接入 - 正交频分复用(SCMA - OFDM)系统中同时使用公钥和私钥进行加密。公钥用于改善PAPR,而私钥在保护不同用户的隐私方面显示出巨大潜力。同时,通过传输三维洛伦兹混沌系统的初始值和参数,可在接收端轻松获得准确的相位和分割位置,极大地简化了边带信息的传输,密钥空间接近10。此外,已在2公里长的七芯光纤上通过实验证明了42 Gb/s加密SCMA - OFDM信号的传输,结果表明,由于PAPR大幅降低,与传统SCMA - OFDM信号相比,所提方案可将接收灵敏度提高1.0 dB。非法光网络单元的误码率保持在0.5左右,验证了传输消息的高安全性。