Acta Optica Sinica, Volume. 43, Issue 24, 2406001(2023)

Performance Analysis of the Diversity Receiver System with Reed-Solomon Codes for Oceanic Turbulence Suppression

Yi Yang1, Xiaofen Qiu1、*, Xiaobo Wang2, Jianlei Zhang1, Hanyu He1, Huan Nie1, and Haoyu Liu1
Author Affiliations
  • 1School of Electronic Engineering, Xi'an University of Posts & Telecommunications, Xi'an 710121, Shaanxi, China
  • 2Key Laboratory of Underwater Information and Control, China Shipbuilding Industry Corporation 705 Research Institute, Xi'an 710077, Shaanxi, China
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    Figures & Tables(9)
    Structure of diversity receiver system with RS codes based on Gaussian beams
    Structure of EEGC SIMO system based on Gaussian beams. (a) APD symmetric distribution; (b) APD asymmetric distribution
    ABER variation curves of oceanic SIMO communication system with emitting optical power. (a) EGC with symmetrically distributed APD; (b) EEGC with symmetrically distributed APD; (c) EGC with asymmetrically distributed APD; (d) EEGC with asymmetrically distributed APD
    Upper bound ABER variation curves of SIMO communication system combined RS codes with emitting optical power. (a) EGC with symmetrically distributed APD; (b) EEGC with symmetrically distributed APD; (c) EGC with asymmetrically distributed APD; (d) EEGC with asymmetrically distributed APD
    • Table 1. Corresponding coefficients a and b in 55 m SIMO system with respect to different oceanic channels PDFs

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      Table 1. Corresponding coefficients a and b in 55 m SIMO system with respect to different oceanic channels PDFs

      drωρ0/mSI

      Mean and variance

      of the PDF

      Fitting parameterApproximate parameter
      MeanVariancea'b'ab
      -0.540-0.750.00220.55690.52470.0246-2.72165.2037-3.57846
      1.000-0.750.00170.95460.48300.0663-1.52603.1877-2.30374
      1.000-2.500.00400.13360.54780.0015-11.570021.1246-12.764322
      4.437-2.500.00240.45150.53290.0164-3.38096.3585-4.09477
    • Table 2. Emitting optical power at an ABER of 10-8 in SIMO system with symmetrically distributed APD

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      Table 2. Emitting optical power at an ABER of 10-8 in SIMO system with symmetrically distributed APD

      drωEmitting optical power using EGC Pt /dBmEmitting optical power using EEGC Pt /dBm
      0.540-0.7528.927.7
      1.000-0.7534.533.5
      1.000-2.5022.021.0
      4.437-2.5027.226.2
    • Table 3. Emitting optical power at an ABER of 10-8 in SIMO system with asymmetrically distributed APD

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      Table 3. Emitting optical power at an ABER of 10-8 in SIMO system with asymmetrically distributed APD

      drω

      Emitting optical power using EGC

      Pt /dBm

      Emitting optical power using EEGC Pt /dBm
      0.540-0.7530.127.8
      1.000-0.7536.033.6
      1.000-2.5023.521.1
      4.437-2.5028.726.3
    • Table 4. Emitting optical power at an upper bound ABER of 10-8 in RS-SIMO system with symmetrically distributed APD

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      Table 4. Emitting optical power at an upper bound ABER of 10-8 in RS-SIMO system with symmetrically distributed APD

      drωEmitting optical power using EGC Pt /dBmEmitting optical power using EEGC Pt /dBm
      0.540-0.7520.619.6
      1.000-0.7522.421.4
      1.000-2.5019.118.1
      4.437-2.5020.219.2
    • Table 5. Emitting optical power at an upper bound ABER of 10-8 in RS-SIMO system with asymmetrically distributed APD

      View table

      Table 5. Emitting optical power at an upper bound ABER of 10-8 in RS-SIMO system with asymmetrically distributed APD

      drωEmitting optical power using EGC Pt /dBmEmitting optical power using EEGC Pt /dBm
      0.540-0.7522.019.7
      1.000-0.7523.921.5
      1.000-2.5020.618.2
      4.437-2.5021.719.3
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    Yi Yang, Xiaofen Qiu, Xiaobo Wang, Jianlei Zhang, Hanyu He, Huan Nie, Haoyu Liu. Performance Analysis of the Diversity Receiver System with Reed-Solomon Codes for Oceanic Turbulence Suppression[J]. Acta Optica Sinica, 2023, 43(24): 2406001

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Jan. 9, 2023

    Accepted: Mar. 12, 2023

    Published Online: Dec. 12, 2023

    The Author Email: Qiu Xiaofen (shiguozi907@163.com)

    DOI:10.3788/AOS230454

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