Phase compensation considerations on coherent, free-space laser communications system

被引:3
|
作者
Belmonte, Aniceto [1 ]
Rodriguez, Alejandro [1 ]
Dios, Federico [1 ]
Comeron, Adolfo [1 ]
机构
[1] Tech Univ Catalonia, Dept Signal Theory & Commun, Barcelona 08034, Spain
关键词
adaptive optics; phase compensation; atmospheric optics; free-space optical communications;
D O I
10.1117/12.740276
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
Free-space optical communications have distinct advantages over conventional RF and microwave systems by virtue of their high carrier frequencies that permit high modulation bandwidth, enhanced security, freedom from interference, and low power. However, the turbulent atmosphere causes phase variations along the path that are manifested in intensity variations (scintillation) and beam profile distortion and boresight wander. These variations manifest as a multiplicative noise source that reduces the ability of the receiver to determine the information contained in the modulation. For many years, the emphasis throughout this area has been on elucidating those implications of the atmospheric propagation problem that bear on the design and performance of optical communication systems. In this work, it is our intention toelucidate how the addition of adaptive optics to the transmitter or receiver can reduce the effects of atmospheric propagation and, in so doing, to quantify the improvement on the performance of optical communications systems regarding coherent detection.
引用
收藏
页码:A7361 / A7361
页数:11
相关论文
共 50 条
  • [41] Control processing technology of Acquisition, Tracking and Pointing for the free-space laser communications system
    Yin, DS
    Pi, DZ
    Lu, AL
    Xiong, JT
    PROCEEDINGS OF THE 2ND CHINA-JAPAN SYMPOSIUM ON MECHATRONICS, 1997, : 70 - 73
  • [42] FREE-SPACE OPTICAL COMMUNICATIONS USING QUANTUM CASCADE LASER
    Bielecki, Z.
    Kolosowski, W.
    Mikolajczyk, J.
    Nowakowski, M.
    Sedek, E.
    Wojtas, J.
    2008 MIKON CONFERENCE PROCEEDINGS, VOLS 1 AND 2, 2008, : 47 - +
  • [43] Propagation Characteristics in Free-Space Laser Communications with Error Correction
    Sakamoto, Maiko
    Ogawa, Kayo
    2013 18TH MICROOPTICS CONFERENCE (MOC), 2013,
  • [44] Interference of phase-shifted chirped laser pulses for secure free-space optical communications
    Rogozhnikov, G. S.
    Romanov, V. V.
    Rukavishnikov, N. N.
    Molchanov, V. Ya.
    Yushkov, K. B.
    APPLIED OPTICS, 2018, 57 (10) : C98 - C102
  • [45] High data-rate laser transmitters for free-space laser communications
    Biswas, A
    Hemmati, H
    Lesh, JR
    FREE-SPACE LASER COMMUNICATION TECHNOLOGIES XI, 1999, 3615 : 169 - 178
  • [46] Free-Space Communication Turbulence Compensation by Optical Phase Conjugation
    Chen, Junfan
    Huang, Yang
    Cai, Rujun
    Zheng, Anrui
    Yu, Zhaoxin
    Wang, Tianshu
    Liu, Zhi
    Gao, Shiming
    IEEE PHOTONICS JOURNAL, 2020, 12 (05):
  • [47] Automatic Turbulence Resilience in Self-Coherent Free-Space Optical Communications
    Zhang, Runzhou
    Su, Xinzhou
    Song, Hao
    Zhou, Huibin
    Tur, Moshe
    Willner, Alan E.
    2023 OPTICAL FIBER COMMUNICATIONS CONFERENCE AND EXHIBITION, OFC, 2023,
  • [48] High data-rate laser transmitters for free-space laser communications
    Biswas, A
    Hemmati, H
    Lesh, JR
    FREE-SPACE LASER COMMUNICATION TECHNOLOGIES XI, 1999, 3615 : 269 - 277
  • [49] Capacity of coherent free-space optical links using atmospheric compensation techniques
    Belmonte, Aniceto
    Kahn, Joseph M.
    OPTICS EXPRESS, 2009, 17 (04): : 2763 - 2773
  • [50] Performance of an adaptive phase estimator for coherent free-space optical communications over Gamma-Gamma turbulence
    Li, Yiming
    Gao, Chao
    Liang, Haodong
    Miao, Maoke
    Li, Xiaofeng
    OPTICS COMMUNICATIONS, 2017, 388 : 47 - 52