• Chinese Journal of Lasers
  • Vol. 51, Issue 23, 2306003 (2024)
Qi Zhang1, Dianwu Yue1,*, Gongnuo Zhao1, and Xianying Xu2
Author Affiliations
  • 1College of Information Science and Technology, Dalian Maritime University, Dalian 116026, Liaoning , China
  • 2School of Information Science and Engineering, Dalian Polytechnic University, Dalian 116034, Liaoning , China
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    DOI: 10.3788/CJL240792 Cite this Article Set citation alerts
    Qi Zhang, Dianwu Yue, Gongnuo Zhao, Xianying Xu. Outage‑Probability Analysis of Mixed FSO‑VUWOC Systems with Generalized Transmit‑Laser Selection[J]. Chinese Journal of Lasers, 2024, 51(23): 2306003 Copy Citation Text show less
    References

    [1] Ao X Y, Yang Q, Dai X X et al. Real-time free-space optical communication technology[J]. Chinese Journal of Lasers, 49, 1206004(2022).

    [2] Yin H, Song Y X, Li Y C et al. Free-space optical communication atmospheric turbulence compensation based on multiple input multiple output mode diversity coherent reception[J]. Chinese Journal of Lasers, 49, 2306002(2022).

    [3] Liu Y J, He Y Q, Chen K et al. Asynchronous transmission for cooperative free-space optical communication system[J]. IEEE Wireless Communications Letters, 11, 766-770(2022).

    [4] Li F M, Cui S, Chen Y N et al. Toward practical temporal diversity coherent combining based variable data-rate free space optical communication systems[J]. IEEE Access, 10, 79480-79490(2022).

    [5] Kaymak Y, Rojas-Cessa R, Feng J H et al. A survey on acquisition, tracking, and pointing mechanisms for mobile free-space optical communications[J]. IEEE Communications Surveys & Tutorials, 20, 1104-1123(2018).

    [6] Ali M F, Jayakody D N K, Li Y H. Recent trends in underwater visible light communication (UVLC) systems[J]. IEEE Access, 10, 22169-22225(2022).

    [7] Zeng Z Q, Fu S, Zhang H H et al. A survey of underwater optical wireless communications[J]. IEEE Communications Surveys & Tutorials, 19, 204-238(2017).

    [8] Li S, Yang L, da Costa D B et al. Performance analysis of mixed RF-UWOC dual-hop transmission systems[J]. IEEE Transactions on Vehicular Technology, 69, 14043-14048(2020).

    [9] Lei H J, Zhang Y Y, Park K H et al. Performance analysis of dual-hop RF-UWOC systems[J]. IEEE Photonics Journal, 12, 7901915(2020).

    [10] Li S, Yang L, da Costa D B et al. Performance analysis of UAV-based mixed RF-UWOC transmission systems[J]. IEEE Transactions on Communications, 69, 5559-5572(2021).

    [11] Yang L, Zhu Q, Li S et al. On the performance of mixed FSO-UWOC dual-hop transmission systems[J]. IEEE Wireless Communications Letters, 10, 2041-2045(2021).

    [12] Christopoulou C, Sandalidis H G, Ansari I S. Outage probability of a multisensor mixed UOWC-FSO setup[J]. IEEE Sensors Letters, 3, 7501104(2019).

    [13] Kumar L B, Krishnan P. Multi-hop convergent FSO-UWOC system to establish a reliable communication link between the islands[J]. Optics Communications, 474, 126107(2020).

    [14] Joshi D, Sharma D, Singh H et al. Performance analysis of mixed FSO-UWOC dualhop transmission system[C], 658-662(2024).

    [15] Bhowal A, Kshetrimayum R S. Transmit laser selection for two hop decode and forward FSO communication with pointing errors[J]. IEEE Communications Letters, 23, 2301-2305(2019).

    [16] Elamassie M, Al-Nahhal M, Kizilirmak R C et al. Transmit laser selection for underwater visible light communication systems[C](2019).

    [17] Bhowal A, Kshetrimayum R S. Transmit laser selection for dual hop decode and forward UOWC cooperative communication[C](2020).

    [18] Sharda P, Jaiswal A, Bhatnagar M R et al. Clustering based diversity improving transmit laser selection schemes using quantized feedback for FSO system[J]. IEEE Transactions on Vehicular Technology, 70, 6855-6868(2021).

    [19] Jamali M V, Nabavi P, Salehi J A. MIMO underwater visible light communications: comprehensive channel study, performance analysis, and multiple-symbol detection[J]. IEEE Transactions on Vehicular Technology, 67, 8223-8237(2018).

    [20] Elamassie M, Miramirkhani F, Uysal M. Performance characterization of underwater visible light communication[J]. IEEE Transactions on Communications, 67, 543-552(2019).

    [21] Saxena P, Bhatnagar M R. A simplified form of beam spread function in underwater wireless optical communication and its applications[J]. IEEE Access, 7, 105298-105313(2019).

    [22] Fu Y Q, Huang C T, Du Y Z. Effect of aperture averaging on mean bit error rate for UWOC system over moderate to strong oceanic turbulence[J]. Optics Communications, 451, 6-12(2019).

    [23] Elamassie M, Uysal M. Asymptotic performance of generalized transmit laser selection over lognormal turbulence channels[J]. IEEE Communications Letters, 24, 1762-1766(2020).

    [24] Celik A, Saeed N, Shihada B et al. End-to-end performance analysis of underwater optical wireless relaying and routing techniques under location uncertainty[J]. IEEE Transactions on Wireless Communications, 19, 1167-1181(2020).

    [25] Jiang H Y, Qiu H B, He N et al. Performance of spatial diversity DCO-OFDM in a weak turbulence underwater visible light communication channel[J]. Journal of Lightwave Technology, 38, 2271-2277(2020).

    [26] Ji X Y, Yin H X, Jing L Y et al. Performance analysis of underwater wireless optical communication system with strong turbulence channels based on strong fluctuation theory[J]. Acta Optica Sinica, 42, 1801001(2022).

    [27] Shi J, Huang A P, Tao L W. Deep learning aided channel estimation and signal detection for underwater optical communication[J]. Chinese Journal of Lasers, 49, 1706004(2022).

    [28] Elamassie M, Uysal M. Vertical underwater visible light communication links: channel modeling and performance analysis[J]. IEEE Transactions on Wireless Communications, 19, 6948-6959(2020).

    [29] Lou Y, Cheng J L, Nie D H et al. Performance of vertical underwater wireless optical communications with cascaded layered modeling[J]. IEEE Transactions on Vehicular Technology, 71, 5651-5655(2022).

    [30] Ijeh I C, ali Khalighi M, Elamassie M et al. Outage probability analysis of a vertical underwater wireless optical link subject to oceanic turbulence and pointing errors[J]. Journal of Optical Communications and Networking, 14, 439-453(2022).

    [31] Elamassie M, Uysal M. Outage performance analysis of vertical underwater VLC links[C](2022).

    [32] Ji X Y, Yin H X, Jing L Y et al. Modeling and performance analysis of oblique underwater optical communication links considering turbulence effects based on seawater depth layering[J]. Optics Express, 30, 18874-18888(2022).

    [33] Andrews L C, Phillips R L[M]. Laser beam propagation through random media(2005).

    [35] Arnold B C, Balakrishnan N, Nagaraja H N[M]. A first course in order statistics(2008).

    [36] Gradshteyn I S, Ryzhik I M[M]. Table of integrals, series, and products, 318(2014).

    [37] Wang R, Zhang W R, Zeng X D et al. Structure design and simulation study of dual two-quadrant coherent tracking system in free space optical communication[C], 1705-1710(2018).

    [38] Zhang K H, Zhu B C, Zhang Z C et al. Tracking system for fast moving nodes in optical mobile communication and the design rules[J]. IEEE Transactions on Wireless Communications, 20, 2716-2728(2021).

    Qi Zhang, Dianwu Yue, Gongnuo Zhao, Xianying Xu. Outage‑Probability Analysis of Mixed FSO‑VUWOC Systems with Generalized Transmit‑Laser Selection[J]. Chinese Journal of Lasers, 2024, 51(23): 2306003
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