Zhang Jinnan, Liu Bo, Ren Jianxin, Mao Yaya, Chen Shuaidong, Tang Rong, Song Xiumin, Bai Yu, Wu Xiangyu, Wang Feng, Wu Yongfeng, Zhao Lilong, Sun Tingting, Ullah Rahat
Opt Express. 2022 Apr 25;30(9):15401-15415. doi: 10.1364/OE.457478.
This paper proposes a high-security multi-level constellation shaping trellis-coded modulation (TCM) method based on clustering mapping rules, which is suitable for passive optical networks (PON) using three-dimensional (3D) carrier-less amplitude and phase modulation (CAP). This method combines the TCM mapping process with the constellation shaping and performs a multi-level mapping of the coded signal according to the classification label, so as to obtain better constellation shaping gain while expanding the coding gain of the TCM. The 3D constellation generated by the multi-level mapping adopts Chua's chaotic model for rotation encryption, which improves the ability of the optical access network to resist malicious attacks at the physical layer. Experiments show that 70 Gb/s (7×10 Gb/s) transmission is achieved on a 2 km weakly coupled seven-core fiber using the scheme proposed in this paper. At a bit error rate (BER) of 1 × 10, the difference in receiver sensitivity between the best and worst-performing cores is about 0.7 dB. The difference in receiver sensitivity between the cubic constellation and the chaotic spherical constellation is about 0.1 dB. The sensitivity of the chaotic spherical constellation receiver is about 6.98 dB higher than that of the 2D shaping constellation receiver. The experimental results show that the scheme has reliable security performance while improving the short-reach transmission capacity. It has broad application prospects in future short-reach communication research.
本文提出了一种基于聚类映射规则的高安全性多级星座整形格型编码调制(TCM)方法,该方法适用于采用三维(3D)无载波幅度和相位调制(CAP)的无源光网络(PON)。该方法将TCM映射过程与星座整形相结合,根据分类标签对编码信号进行多级映射,从而在扩大TCM编码增益的同时获得更好的星座整形增益。多级映射生成的3D星座采用蔡氏混沌模型进行旋转加密,提高了光接入网络在物理层抵御恶意攻击的能力。实验表明,采用本文提出的方案,在2 km弱耦合七芯光纤上实现了70 Gb/s(7×10 Gb/s)的传输。在误码率(BER)为1×10时,性能最佳和最差的纤芯之间的接收机灵敏度差异约为0.7 dB。立方星座和混沌球形星座之间的接收机灵敏度差异约为0.1 dB。混沌球形星座接收机的灵敏度比二维整形星座接收机的灵敏度高约6.98 dB。实验结果表明,该方案在提高短距离传输容量的同时具有可靠的安全性能。在未来的短距离通信研究中具有广阔的应用前景。