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具有低峰均功率比的安全高密度星座映射正交频分复用调制方案

Secure high-density constellation mapping OTFS modulation scheme with low PAPR.

作者信息

Deng Shiyu, Mao Yaya, Ren Jianxin, Liu Bo, Wu Xiangyu, Song Xiumin, Chen Shuaidong, Ullah Rahat, Zhao Lilong, Wang Feng, Zhong Qing

出版信息

Opt Express. 2024 May 20;32(11):19438-19448. doi: 10.1364/OE.521010.

DOI:10.1364/OE.521010
PMID:38859078
Abstract

In this paper, a secure orthogonal time-frequency space (OTFS) modulation transmission system based on 3D dense constellation mapping (DCM) geometric shaping is proposed, and a selective reduction amplitude algorithm (SRA) for DCM to reduce peak average power ratio (PAPR) is presented. The DCM is based on regular tetrahedron construction to improve its space utilization efficiency. The proposed SRA involves reducing high PAPRs transmitter and restoring them at the receiving end, which only requires an additional 0.57% of the total transmission capacity. The algorithm reduces PAPR while ensuring the bit error rate performance of the system, so it is suitable for systems that need to process large amounts of transmitted data quickly. By verifying the actual transmission performance on a 2 km of 7-core optical fiber transmission system, the optical transmission with a bit rate of 33.93Gb/s is achieved. The experimental results show that when the bit error rate (BER) reaches the 3.8×10 threshold, the OTFS system using DCM and SRA could improve the receiver sensitivity by 3.7 dB compared with the OTFS system using concentric cube mapping and SRA, and 2.7 dB compared with the OFDM system using DCM. After adding the SRA, the PAPR of the OTFS system is reduced by more than 2.2 dB. When the received optical power reaches near the bit error rate threshold, the SRA valid data can be fully recovered by optimizing the SRA.

摘要

本文提出了一种基于三维密集星座映射(DCM)几何整形的安全正交时频空间(OTFS)调制传输系统,并给出了一种用于DCM降低峰均功率比(PAPR)的选择性幅度缩减算法(SRA)。DCM基于正四面体构造,以提高其空间利用效率。所提出的SRA包括在发射端降低高PAPR并在接收端恢复它们,这仅需要额外占用总传输容量的0.57%。该算法在降低PAPR的同时确保了系统的误码率性能,因此适用于需要快速处理大量传输数据的系统。通过在2 km的7芯光纤传输系统上验证实际传输性能,实现了33.93Gb/s比特率的光传输。实验结果表明,当误码率(BER)达到3.8×10阈值时,与使用同心立方体映射和SRA的OTFS系统相比,使用DCM和SRA的OTFS系统可将接收机灵敏度提高3.7 dB,与使用DCM的正交频分复用(OFDM)系统相比提高2.7 dB。添加SRA后,OTFS系统的PAPR降低了超过2.2 dB。当接收光功率接近误码率阈值时,通过优化SRA可以完全恢复SRA有效数据。

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