Performance investigation of an OAM-SK optical communication system based on a PCNN-LDPC under atmospheric turbulence

被引:0
|
作者
Chen, Wei [1 ,2 ]
Hou, Zhengwei [1 ]
Yang, Lixia [1 ]
Bo, Yong [1 ]
Guo, Lixin [3 ]
机构
[1] Anhui Univ, Informat Mat & Intelligent Sensing Lab Anhui Prov, Hefei 230601, Peoples R China
[2] Jianghuai Adv Technol Ctr, Hefei 230000, Peoples R China
[3] Xidian Univ, Sch Phys & Optoelect Engn, Xian 710071, Peoples R China
来源
OPTICS EXPRESS | 2025年 / 33卷 / 03期
基金
中国国家自然科学基金;
关键词
ORBITAL ANGULAR-MOMENTUM; LIGHT;
D O I
10.1364/OE.541627
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
This paper proposes a probabilistic convolutional neural network-low density parity check (PCNN-LDPC) demodulation scheme for orbital angular momentum shift keying free- space optical (OAM-SK-FSO) communication systems, with a focus on its bit error rate (BER) performance. Initially, the original information sequences were encoded by a low-density parity check (LDPC) and transformed into superposition state Laguerre Gaussian (LG) beams using a 16-Ary mapping scheme. The transmission of LG beams through atmospheric turbulence was then simulated using the power spectral inversion method, and the dataset was constructed and trained using a convolutional neural network (CNN). During demodulation, the CNN adaptive demodulator was integrated with the LDPC decoding algorithm. Classification probabilities from the CNN adaptive demodulator were used in the LDPC decoding process to enhance the channel estimation credibility. The computational results demonstrate that the BER of the PCNN-LDPC significantly outperforms both the CNN adaptive demodulator and CNN-LDPC demodulation strategy. Additionally, the performances of three LDPC decoding algorithms-min-sum (MS), normalized min-sum (NMS), and offset min-sum (OMS)-are compared, revealing that the probabilistic convolutional neural network-normalized min-sum (PCNN-NMS) achieves the best BER performance, highest convergence efficiency, and greatest decoding stability. These findings provide theoretical references and technical support for studying the BER performance of OAM-SK-FSO communication systems. (c) 2025 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
引用
收藏
页码:5369 / 5381
页数:13
相关论文
共 50 条
  • [1] Research on BER performance of the OAM-SK FSO communication system with wavefront phase correction
    Li S.
    Wang P.
    Liu T.
    Pan Y.
    Wang W.
    Tongxin Xuebao/Journal on Communications, 2022, 43 (05): : 14 - 23
  • [2] Experimental Evaluation of LDPC-coded OAM Based FSO Communication in the Presence of Atmospheric Turbulence
    Qu, Zhen
    Djordjevic, Ivan B.
    2015 12TH INTERNATIONAL CONFERENCE ON TELECOMMUNICATIONS IN MODERN SATELLITE, CABLE AND BROADCASTING SERVICES (TELSIKS), 2015, : 117 - 122
  • [3] LDPC-coded OAM Based FSO Transmission System in the Presence of Strong Atmospheric Turbulence
    Qu, Zhen
    Djordjevic, Ivan B.
    2015 49TH ASILOMAR CONFERENCE ON SIGNALS, SYSTEMS AND COMPUTERS, 2015, : 999 - 1002
  • [4] Communication Performance of OAM Based FSO System in Weak Turbulence Environment
    Du, Silun
    Wang, Tainshu
    Yang, Qiaochu
    Li, Baoqun
    2022 IEEE 10TH INTERNATIONAL CONFERENCE ON INFORMATION, COMMUNICATION AND NETWORKS (ICICN 2022), 2022, : 142 - 146
  • [5] Investigation of the EDFA effect on the BER performance in space uplink optical communication under the atmospheric turbulence
    Li, Mi
    Jiao, Wenxiang
    Song, Yuejiang
    Zhang, Xuping
    Dong, Shandong
    Poo, Yin
    OPTICS EXPRESS, 2014, 22 (21): : 25354 - 25361
  • [6] Performance analysis of a LDPC coded OAM-based UCA FSO system exploring linear equalization with channel estimation over atmospheric turbulence
    Zhang, Yan
    Wang, Ping
    Liu, Tao
    Guo, Lixin
    Li, Yutao
    Wang, Wei
    OPTICS EXPRESS, 2018, 26 (17): : 22182 - 22196
  • [7] Performance Analysis for LDPC-coded optical PPM communication system in weak turbulence
    Wang Hongxing
    Su Yanqin
    Mang Guangyi
    Mang Tieying
    SECOND INTERNATIONAL CONFERENCE ON SPACE INFORMATION TECHNOLOGY, PTS 1-3, 2007, 6795
  • [8] Capacity analysis of free space optical communication system under atmospheric turbulence
    Kanchan Sharma
    Surender K. Grewal
    Optical and Quantum Electronics, 2020, 52
  • [9] Capacity analysis of free space optical communication system under atmospheric turbulence
    Sharma, Kanchan
    Grewal, Surender K.
    OPTICAL AND QUANTUM ELECTRONICS, 2020, 52 (02)
  • [10] Spectrum Slicing-Based Performance Analysis of Free Space Optical Communication Under Atmospheric Turbulence
    Vasani E.
    Shah V.
    Journal of The Institution of Engineers (India): Series B, 2023, 104 (01) : 319 - 326