Investigation on Orbital Angular Momentum Mode-Based Beam Shaping for Indoor Optical Wireless Communications

被引:4
|
作者
Li, Jianghao [1 ]
Yang, Qi [2 ]
Dai, Xiaoxiao [2 ]
Lim, Christina [1 ]
Nirmalathas, Ampalavanapillai [1 ]
机构
[1] Univ Melbourne, Dept Elect & Elect Engn, Melbourne, Vic 3010, Australia
[2] Huazhong Univ Sci & Technol, Sch Opt & Elect Informat, Wuhan 430074, Peoples R China
基金
澳大利亚研究理事会;
关键词
Beam shapes; indoor optical wireless communications; orbital angular momentum; wireless personal area networks; ALL-FIBER LASER; TRANSMISSION; TERABIT; SYSTEM;
D O I
10.1109/JLT.2022.3206426
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, we report a novel indoor optical wireless communications system employing orbital angular momentum (OAM) mode-based beam shaping. Different shapes of transmitted beams with various power distribution can be obtained by superposing different OAM modes incoherently with different power ratios. The bit-error-rate (BER) performance of the proposed system has been numerically and experimentally investigated. The results show that the effective coverage (BER < 3.8 x 10(-3)) can be expanded significantly by employing OAM mode-based beam shaping scheme at certain power ratios between OAM(0) mode and higher-order OAM mode, compared to conventional OWC systems without OAM mode-based beam shaping scheme and the optimal performance for symbol rate of 10 Gbaud can be obtained when the power ratio of OAM(0)/OAM(1) and OAM(0)/OAM(2) is 0.3 and 0.33, respectively. Furthermore, the BER performance distribution in different directions within the optical cell has also been evaluated. It has been shown that less variation in the performance can be achieved in the system employing OAM(0) with OAM(2) based-beam shaping compared with that in the system employing OAM(0) with OAM(1) modes.
引用
收藏
页码:7738 / 7745
页数:8
相关论文
共 50 条
  • [21] Quantum Few-Mode Fiber Communications Based on the Orbital Angular Momentum
    Lin, Changyu
    Djordjevic, Ivan B.
    Cvijetic, Milorad
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2013, 25 (01) : 3 - 6
  • [22] Few-Mode Based Beam Shaping for Multi-User Indoor Optical Wireless Communications With Time-Slot Coding
    Li, Jianghao
    Lim, Christina
    Nirmalathas, Ampalavanapillai
    IEEE PHOTONICS JOURNAL, 2022, 14 (01):
  • [23] Comparison of Adaptive Equalization Methods for Improving Indoor Optical Wireless Communications Employing Few-Mode Based Uniform Beam Shaping
    Li, Jianghao
    Lim, Christina
    Nirmalathas, Ampalavanapillai
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2022, 40 (12) : 3768 - 3776
  • [24] High-precision clock date recovery for optical wireless communications using orbital-angular-momentum-based mode division multiplexing
    Li, Jianghao
    Yuan, Yangsheng
    Cai, Yangjian
    OPTICS LETTERS, 2023, 48 (11) : 3107 - 3110
  • [25] Analysis of orbital angular momentum of a misaligned optical beam
    Vasnetsov, MV
    Pas'ko, VA
    Soskin, MS
    NEW JOURNAL OF PHYSICS, 2005, 7
  • [26] Angular Diversity for Indoor MIMO Optical Wireless Communications
    Wang, Thomas Q.
    He, Cuiwei
    Armstrong, Jean
    2015 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC), 2015, : 5066 - 5071
  • [27] Reducing orbital angular momentum crosstalk of the Bessel-Gaussian beam for underwater optical communications
    Zhang, Hui
    Ding, Wenqiang
    Fu, Peng
    Liu, Xianlong
    Gao, Yaru
    Gao, Yuanmei
    Cai, Yangjian
    Yuan, Yangsheng
    JOURNAL OF OPTICS, 2020, 22 (06)
  • [28] Orbital angular momentum optical communications enhanced by artificial intelligence
    Li, Baoli
    Luan, Haitao
    Li, Keyao
    Chen, Qinyu
    Meng, Weijia
    Cheng, Ke
    Gu, Min
    Fang, Xinyuan
    JOURNAL OF OPTICS, 2022, 24 (09)
  • [29] Tb/s Optical Communications using Orbital Angular Momentum
    Willner, Alan E.
    2013 18TH MICROOPTICS CONFERENCE (MOC), 2013,
  • [30] Performance Evaluation of Wireless Communications using Orbital Angular Momentum Multiplexing
    Lee, Doohwan
    Sakdejayont, Theerat
    Sasaki, Hirofumi
    Fukumoto, Hiroyuki
    Nakagawa, Tadao
    2016 INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION (ISAP), 2016, : 280 - 281