Chinese Journal of Lasers, Volume. 43, Issue 12, 1206004(2016)
Feature Analysis of Aeronautical Laser Communication System and Airborne Laser Communication Experiment
[1] [1] Wang Jianjun, Xu Lijun, Li Xiaolu. Impacts of random attitude measurement errors on airborne laser scanning image[J]. Chinese J Lasers, 2011, 38(3): 0314001.
[5] [5] Liu Houtong, Chen Liangfu, Su Lin. Theoretical research of Fernald forward integration method for aerosol backscatter coefficient inversion of airborne atmosphere detecting lidar[J]. Acta Physica Sinica, 2011, 60(6): 064204.
[7] [7] Masahiro T. Acquisition and tracking control of satellite-borne laser communication systems and simulation of downlink fluctuations[J]. Optical Engineering, 2006, 45(8): 4-12.
[8] [8] Louthain J A, Schmidt J D. Anisoplanatism in airborne laser communication[J]. Optics Express, 2008, 16(14): 10769-10785.
[9] [9] Skormin V A, Tascillo M A, Busch T E. Adaptive jitter rejection technique applicable to airborne laser communication systems[J]. Optical Engineering, 1995, 34(5): 1263-1268.
[10] [10] Nikulin V, Khandekar R, Sofka J, et al. Acousto-optic pointing and tracking systems for free-space laser communications[C]. SPIE, 2005, 5892: 58921C.
[11] [11] Sofka J, Nikulin V. Bit error rate optimization of an acousto-optic tracking system for free-space laser communications[C]. SPIE, 2006, 6105: 61050L.
[12] [12] Tolker-Nielsen T, Oppenhaeuser G. In-orbit test result of an operational optical intersatellite link between ARTEMIS and SPOT4 SILEX[C]. SPIE, 2002, 4635: 1-15.
[13] [13] Ho T H, Milner S D, Davis C C. Fully optical real-time pointing, acquisition, and tracking system for free space optical link[C]. SPIE, 2005, 5712: 81-92.
[14] [14] Cao Y, Guo J, Huang L W. Variable structure multiple model tracking for airborne laser communication systems[C]. SPIE, 2013, 8906: 890607.
[15] [15] Louthain J A, Schmidt J D. Integrated approach to airborne laser communication[C]. SPIE, 2008, 7108: 71080F.
[16] [16] Maynard J A, Begley D. Airborne laser communications: past, present, and future[C]. SPIE, 2005, 5892: 58920A.
[17] [17] Jiang H, Liu G, Yin F, et al. Laser communications technology with airborne platform[C]. SPIE, 2006, 6031: 603102.
[18] [18] Biswas A, Page N, Neal J, et al. Airborne optical communications demonstrator design and pre-flight test results[C]. SPIE, 2005, 5712: 205-216.
[19] [19] Bagley Z C, Hughes D H, Juarez J C, et al. Hybrid optical radio frequency airborne communications[J]. Optical Engineering, 2012, 51(5): 055006.
[20] [20] Meng L, Wang C, Qian C, et al. Method of high speed flow field influence and restrain on laser communication[C]. SPIE, 2013, 8906: 890623.
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Song Yansong, Chang Shuai, Tong Shoufeng, Zhang Lizhong, Jiang Huilin, Dong Yan, Dong Keyan, Zhao Xin, Zhang Lei. Feature Analysis of Aeronautical Laser Communication System and Airborne Laser Communication Experiment[J]. Chinese Journal of Lasers, 2016, 43(12): 1206004
Category: Optical communication
Received: Aug. 8, 2016
Accepted: --
Published Online: Dec. 9, 2016
The Author Email: Yansong Song (songyansong2006@126.com)