Infrared and Laser Engineering, Volume. 52, Issue 1, 20220331(2023)

Application of optical communication technology of large-scale UAV based on aviation backbone network

Fengfeng Xue, Shanghong Zhao, Yongjun Li, Qin Tian, and Haotong Fu
Author Affiliations
  • College of Information and Navigation, Air Force Engineering University, Xi'an 710077, China
  • show less
    References(26)

    [1] Xiguo Liu, Min Liu, Zhongyang Mao, et al. Application of wireless laser communication in large-scale marine unmanned aerial vehicles. Study on Optical Communications, 59-63(2021).

    [2] [2] Ji Haan. Research on generation visualization of war situation [D]. Changsha: National University of Defense Technology, 2011. (in Chinese)

    [3] [3] Xiong M, Han S, Liu Q, et al. Timedomain analysis f resonant beam ging communications with delaydivide demodulation [EBOL]. (20220302) [20220713]. https:arxiv.gabs2203.01076.

    [4] [4] Maynard J A, Begley D. Airbne laser communications: past, present, future [C]Proceedings of SPIE, 2005, 5892: 58920A.

    [5] [5] Wang Shuai. Research on local infrared laser broadcasting communication system[D]. Changchun: Changchun University of Science Technology, 2019. (in Chinese)

    [6] Shanghong Zhao. An advance in the field of aeronautical laser/RF communication network technology on research. Journal of Air Force Engineering University (Natural Science Edition), 21, 1-15(2020).

    [8] Fei Zeng, Shijie Gao, Xiaogang San, et al. Development status and trend of airborne laser communication terminals. Chinese Optics, 9, 65-73(2016).

    [9] Jianxin An, Xiaolei He, Qianyuan Yang, et al. Research on the application of the air to ground free space optical communication by small UAV. Optical Communication Technology, 41, 10-13(2017).

    [10] Yang Chen, Xiang Wang, Shanghong Zhao, et al. Research on the performance of UAV aerial OFDM optical communication link. Semiconductor Optoelectronics, 39, 853-857(2018).

    [11] [11] Zheng Huamei. Design implementation of small UAV ground station software system[D]. Chengdu: University of Electronic Science Technology of China, 2015. (in Chinese)

    [13] H Nouri, M Uysal. Experimental investigation on the effect of wavelength on aperture averaging in FSO communications. Optics Letters, 45, 3063-3066(2020).

    [14] Xizheng Ke, Jiali Wu, Shangjun Yang. Research progress and prospect of atmospheric turbulence for wireless optical communication. Chinese Journal of Radio Science, 36, 323-339(2021).

    [15] Xizheng Ke, Jingyuan Liang, Dongsheng Xu, et al. Research progress of pulse position modulation technology in optical wireless communication. Opto-Electronic Engineering, 49, 210387(2022).

    [16] [16] Faishid F, les P M. Wavelength Division Multiplexing [M]Keiser G. Fiber Optic Communications. Berlin: Springer, 2021: 383435.

    [17] Yang Cao, Fatao Ren, Xiaofeng Peng, et al. Research on CRC-LT coding performance in free space optical communication. Infrared and Laser Engineering, 47, 1122003(2018).

    [18] Fengtao He, Jiaqi Li, Jianlei Zhang, et al. Performance analysis of wavelength diversity wireless optical communication system in ocean turbulence. Infrared and Laser Engineering, 50, 20210131(2021).

    [19] [19] Tan Zhenkun. Effects of facts on the perfmance of heterodyne detection experimental investigation in wireless optical communication[D]. Xi’an: Xi’an University of Technology, 2019. (in Chinese)

    [20] [20] Cahoy K, Serra P, Cierny O. Integrated trackreceive system f freespace optical communications: US, 20210336697A1[P]. 20211028.

    [21] [21] Xue Lunsheng. Research on multicarrier transmission technique f troposcatter communication systems[D]. Xi’an: Nthwestern Polytechnical University, 2019. (in Chinese)

    [22] T Zhou. Performance analysis of hybrid radio frequency and free space optical communication networks with cooperative spectrum sharing. Photonics, 8, 108(2021).

    [23] A Zheng, Y Huang, S Gao. Modeling and spatial diversity-based receiving improvement of in-flight UAV FSO communication links. Applied Sciences, 11, 6365(2021).

    [24] V R Nallagonda, P Krishnan. Performance analysis of FSO based inter-UAV communication systems. Optical and Quantum Electronics, 53, 192(2021).

    [25] [25] Trung H D, Trung N H. Relay UAVbased fso communications over lognmal channels with pointing errs [C]ISDA 2020: Intelligent Systems Design Applications, 2021: 5968.

    [26] Na Lv, Xinqing Zou, Kefan Chen, et al. Update strategy for software-defined airborne network of aviation swarm. Systems Engineering and Electronics, 42, 206-216(2020).

    [27] S Lohani, E M Knutson, R T Glasser. Generative machine learning for robust free-space communication. Communications Physics, 3, 177(2020).

    [28] H Ajam, M Najafi, V Jamali, et al. Ergodic sum rate analysis of UAV-based relay networks with mixed RF-FSO channels. IEEE Open Journal of the Communications Society, 1, 164-178(2020).

    Tools

    Get Citation

    Copy Citation Text

    Fengfeng Xue, Shanghong Zhao, Yongjun Li, Qin Tian, Haotong Fu. Application of optical communication technology of large-scale UAV based on aviation backbone network[J]. Infrared and Laser Engineering, 2023, 52(1): 20220331

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Optical communication and sensing

    Received: May. 16, 2022

    Accepted: --

    Published Online: Feb. 9, 2023

    The Author Email:

    DOI:10.3788/IRLA20220331

    Topics