Optical Communication Technology, Volume. 46, Issue 4, 37(2022)
Wireless optical coherent communication and its experimental research
[3] [3] FINK D. Coherent detection signal-to-noise[J]. Applied Optics, 1975, 14(3): 689-690.
[4] [4] COHEN S C. Heterodyne detection: phase front alignment, beam spot size, and detector uniformity[J]. Applied Optics, 1975, 14(8): 1953-1959.
[5] [5] TAKENAKA T, TANAKA K, FUKUMITSU O. Signal-to-noise ratio in optical heterodyne detection for Gaussian fields[J]. Applied Optics, 1978, 17(21): 3466-3471.
[6] [6] TANAKA K, SAGA N. Maximum heterodyne efficiency of optical heterodyne detection in the presence of background radiation[J]. Applied Optics, 1984, 23(21): 3901-3904.
[7] [7] TANAKA K, OHTA N. Effects of tilt and offset of signal field on heterodyne efficiency[J]. Applied Optics, 1987, 26(4): 627-632.
[8] [8] IFTEKHARUDDIN K M, KARIM M A. Heterodyne detection by using a diffraction-free beam: tilt and offset effects[J]. Applied Optics, 1992, 31(23): 4853-4856.
[9] [9] KALMAN R F, FA N J C, KAZOVSKY L G. Dynamic range of coher-ent analog fiber-optic links[J]. Journal of Lightwave Technology, 1994, 12(7): 1263-1277.
[10] [10] CHAMBERS D M. Modeling heterodyne efficiency for coherent laser radar in the presence of aberrations[J]. Optics Express, 1997, 1(3): 60-67.
[11] [11] DAS K K, IFTEKHARUDDIN K M, KARIM M A. Improved heterodyne mixing efficiency and signal-to-noise ratio with an array of hexagonal detectors[J]. Applied Optics, 1997, 36(27): 7023-7026.
[12] [12] BELMONTE A, RYE B J. Heterodyne lidar returns in the turbulent atmosphere: performance evaluation of simulated systems[J]. Applied Optics, 2000, 39(15): 2401-2411.
[13] [13] BELMONTE A. Analyzing the efficiency of a practical heterodyne lidar in the turbulent atmosphere: Telescope parameters[J]. Optics Express, 2003, 11(17): 2041-2046.
[14] [14] TAYLOR M G. Coherent detection method using DSP for demo-dulation of signal and subsequent equalization of propagation impairments[J]. IEEE photonics technology letters, 2004, 16(2): 674-676.
[15] [15] LANGE R, SMUTNY B, WANDERNOTH B, et al. 142 km, 5.625 Gbps free space optical link based on homodyne BPSK modulation[C]// SPIE. Proceedings of Conference on Free-Space Laser Communication Technolo-gies XVIII, January 24-25, 2006, Bellingham, USA. Bellingham: SPIE, 2006: 61050A1-61050A9.
[16] [16] TOYOSHIMA M. Maximum fiber coupling efficiency and optimum beam size in the presence of random angular jitter for free-space laser systems and their applications[J]. Journal of the Optical Society of America A, 2006, 23(9): 2246-2250.
[17] [17] BELMONTE A, KAHN J M. Performance of synchronous optical receivers using atmospheric compensation techniques[J]. Optics Express, 2008, 16(18): 14151-14162.
[18] [18] TSIFTSIS T A. Performance of heterodyne wireless optical communica-tion systems over gamma-gamma atmospheric turbulence channels[J]. Electronics Letters, 2008, 44(5): 373-374.
[19] [19] SANDALIDIS H G, TSIFTSIS T A, KARAGIANNIDIS G K. Optical wireless communications with heterodyne detection over turbulence chan-nels with pointing errors[J]. Journal of Lightwave Technology, 2009, 27(20): 4440-4445.
[20] [20] DJERROUD K, ACEF O, CLAIRON A, et al. Coherent optical link through the turbulent atmosphere[J]. Optics letters, 2010, 35(9): 1479-1481.
[21] [21] SALEM M, ROLLAND J P. Heterodyne efficiency of a detection system for partially coherent beams[J]. Journal of the Optical Society of America A, 2010, 27(5): 1111-1119.
[22] [22] FICE M J, CHIUCHIARELLI A, CIARAMELLA E, et al. Homodyne coherent optical receiver using an optical injection phase-lock loop[J]. Journal of Lightwave Technology, 2011, 29(8): 1152-1164.
[23] [23] BAYAKI E, SCHOBER R. Performance and design of coherent and differential space-time coded FSO systems[J]. Journal of Lightwave Techno-logy, 2012, 30(11): 1569-1577.
[24] [24] KIKUCHI K. Fundamentals of coherent optical fiber communications[J]. Journal of Lightwave Technology, 2016, 34(1): 157-179.
[25] [25] KAKARLA R, MAZUR M, SCHRODER J, et al. Power efficient communications employing phase sensitive pre-amplified receiver[J]. IEEE Photonics Technology Letters, 2022, 34(1): 3-6.
[29] [29] ZHANG X, JIANG P. Limiter-discriminator detection of a coherent optical heterodyne M-ary CPFSK receiver[J]. Journal of Lightwave Techno-logy, 1992, 10(8): 1127-1131.
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GAO Xiaomei, XING Tian, GAO Wanqian, DONG Ke, KE Xizheng. Wireless optical coherent communication and its experimental research[J]. Optical Communication Technology, 2022, 46(4): 37
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Received: Apr. 24, 2022
Accepted: --
Published Online: Oct. 16, 2022
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