Volume 48 Issue 9
Oct.  2019
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Ao Jun, Tan Xinyuan, Ma Chunbo, Tang Chengpeng. Design of free space optical communication system based on Raptor10 code[J]. Infrared and Laser Engineering, 2019, 48(9): 918004-0918004(6). doi: 10.3788/IRLA201948.0918004
Citation: Ao Jun, Tan Xinyuan, Ma Chunbo, Tang Chengpeng. Design of free space optical communication system based on Raptor10 code[J]. Infrared and Laser Engineering, 2019, 48(9): 918004-0918004(6). doi: 10.3788/IRLA201948.0918004

Design of free space optical communication system based on Raptor10 code

doi: 10.3788/IRLA201948.0918004
  • Received Date: 2019-04-05
  • Rev Recd Date: 2019-05-03
  • Publish Date: 2019-09-25
  • Atmospheric turbulence is a major limiting factor in free-space optical communication systems, causing intensity flicker and phase fluctuations in the beam. In order to cope with the influence of atmospheric turbulence and background light on wireless laser communication, a wireless laser communication system was designed and implemented. The system used the digital fountain code Raptor10 code to improve the reliability and anti-interference ability of the communication system. In addition, the Barker code was used as the frame header and pulse position modulation(PPM) mode, and the data coding, modulation, frame synchronization, demodulation and decoding were completed with the field programmable gate array(FPGA) as the core. The emission source was a 532 nm laser and the detector used a single point APD from Silicon Sensor. Finally, the entire wireless laser communication system was tested in 2 km of free space, and the test results were stable and reliable.
  • [1] Wang Yi, Yang Shuai, Ma Jing, et al. Performance analysis of coherent OFDM system in free space optical communication[J]. Infrared and Laser Engineering, 2016, 45(7):0722003. (in Chinese)
    [2] Lu Min, Liu Linyang, Hranilovic Steve. Raptor coded free space optical communications experiment[J]. IEEE/OSA Journal of Optical Communications and Networking, 2016, 8(6):398-407.
    [3] Ao J, Liang J, Ma C, et al. Optimization of LDPC codes for PIN-based OOK FSO communication systems[J]. IEEE Photonics Technology Letters, 2017, 29(9):727-730.
    [4] Zedini E, Chelli A, Alouini M S. Unified performance analysis of hybrid-ARQ with incremental redundancy over free-space optical channels[C]//IEEE 25th Annual International Symposium on Personal, Indoor and Mobile Radio Communication, 2014:774-778.
    [5] Luby M. LT codes[C]//Proceedings of 43rd Annual IEEE Symposium On Foundations of Computer Science(FOCS), 2002:271-280.
    [6] Han Liqing, Wang Qi, Shaida Katsounri. Performance of free space optical communication over gamma-gamma at mosphere turbulence[J]. Infrared and Laser Engineering, 2011, 40(7):1318-1332. (in Chinese)
    [7] Shokrollahi A, Luby M. Raptor codes[J]. Foundations and Trends in Communications and Information Theory, 2011, 6(3/4):213-322.
    [8] Shriharsha Koila, Goutham Simha G D, Muralidhar Kulkarni, et al. FPGA implementation of a BCH Codec for free space optical communication system[C]//International Conference on Advances in Computing, Communications and Informatics (ICACCI), 2014:1822-1826.
    [9] Gagliardi R, Robbins J, Taylor H. Acquisition sequences in PPM communications[J]. IEEE Transactions on Information Theory, 1987, 33(5):738-744.
    [10] Mohammad Asaduzzaman, Mohammad Asif, Ibna Mustafa, et al. Performance analysis of a multi-hop free space optical link over weak atmospheric turbulence channel for M-Ary PPM modulated signal[C]//IEEE International Conference on Telecommunications and Photonics(ICTP), 2017:247-251.
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Design of free space optical communication system based on Raptor10 code

doi: 10.3788/IRLA201948.0918004
  • 1. Institute of Information and Communication,Guilin University of Electronic Technology,Guilin 541004,China

Abstract: Atmospheric turbulence is a major limiting factor in free-space optical communication systems, causing intensity flicker and phase fluctuations in the beam. In order to cope with the influence of atmospheric turbulence and background light on wireless laser communication, a wireless laser communication system was designed and implemented. The system used the digital fountain code Raptor10 code to improve the reliability and anti-interference ability of the communication system. In addition, the Barker code was used as the frame header and pulse position modulation(PPM) mode, and the data coding, modulation, frame synchronization, demodulation and decoding were completed with the field programmable gate array(FPGA) as the core. The emission source was a 532 nm laser and the detector used a single point APD from Silicon Sensor. Finally, the entire wireless laser communication system was tested in 2 km of free space, and the test results were stable and reliable.

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