Chinese Journal of Lasers, Volume. 50, Issue 19, 1905001(2023)
Characterization and Validation of Beam Transmission Through Wavy Water‐to‐Air Surface
[1] 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).
[2] Islam M S, Younis M, Ahmed A. Communication through air water interface using multiple light sources[C](2018).
[3] Nabavi P, Yuksel M. Performance analysis of air-to-water optical wireless communication using SPADs[C](2020).
[4] Chen L K, Shao Y J, Deng R. Robust UOWC systems against bubble-induced impairments via transmit/receive diversities[J]. Chinese Optics Letters, 17, 100006(2019).
[5] Wang A D, Zhu L, Zhao Y F et al. Adaptive water-air-water data information transfer using orbital angular momentum[J]. Optics Express, 26, 8669-8678(2018).
[6] Spagnolo G S, Cozzella L, Leccese F. Underwater optical wireless communications: overview[J]. Sensors, 20, 2261(2020).
[7] Song A J, Stojanovic M, Chitre M. Editorial underwater acoustic communications: where we stand and what is next?[J]. IEEE Journal of Oceanic Engineering, 44, 1-6(2019).
[8] Hunt K P, Niemeier J J, Kruger A. RF communications in underwater wireless sensor networks[C](2010).
[9] Huang X, Yang F, Song J. Hybrid LD and LED-based underwater optical communication: state-of-the-art, opportunities, challenges, and trends[J]. Chinese Optics Letters, 17, 100002(2019).
[10] Li J, Luo J H, Yuan X H. Influence of water surface wave disturbance on wireless optical communication[J]. Acta Optica Sinica, 41, 0706005(2021).
[11] Ren T R, Yu X N, Tong S F et al. Design and evaluation of high-sensitivity underwater optical communication transceiver based on digital signal processing[J]. Chinese Journal of Lasers, 49, 0406005(2022).
[12] Chen Y F, Kong M W, Ali T et al. 26 m/5.5 Gbps air-water optical wireless communication based on an OFDM-modulated 520-nm laser diode[J]. Optics Express, 25, 14760-14765(2017).
[13] Xu J. Underwater wireless optical communication: why, what, and how?[J]. Chinese Optics Letters, 17, 100007(2019).
[14] Tian P F, Chen H L, Wang P Y et al. Absorption and scattering effects of Maalox, chlorophyll, and sea salt on a micro-LED-based underwater wireless optical communication[J]. Chinese Optics Letters, 17, 100010(2019).
[15] Chen L K, Shao Y J, Di Y J. Underwater and water-air optical wireless communication[J]. Journal of Lightwave Technology, 40, 1440-1452(2022).
[16] Hu S Q, Zhou T H, Chen W B. Performance analysis and simulation of maximum ratio combining in underwater laser communication[J]. Chinese Journal of Lasers, 43, 1206003(2016).
[17] Lin T R, Gong C, Luo J H et al. Dynamic optical wireless communication channel characterization through air-water interface[C], 173-178(2020).
[18] Zhang L, Wang H, Zhao X et al. Experimental demonstration of a two-path parallel scheme for m-QAM-OFDM transmission through a turbulent-air-water channel in optical wireless communications[J]. Optics Express, 27, 6672-6688(2019).
[19] Sun X B, Kong M W, Shen C et al. On the realization of across wavy water-air-interface diffuse-line-of-sight communication based on an ultraviolet emitter[J]. Optics Express, 27, 19635-19649(2019).
[20] Nabavi P, Haq A F M S, Yuksel M. Empirical modeling and analysis of water-to-air optical wireless communication channels[C](2019).
[21] Islam M S, Younis M F. Analyzing visible light communication through air-water interface[J]. IEEE Access, 7, 123830-123845(2019).
[22] Di Y J, Shao Y J, Chen L K. Real-time wave mitigation for water-air OWC systems via beam tracking[J]. IEEE Photonics Technology Letters, 34, 47-50(2022).
[23] Shao Y J, Deng R, He J et al. Real-time 2.2-Gb/s water-air OFDM-OWC system with low-complexity transmitter-side DSP[J]. Journal of Lightwave Technology, 38, 5668-5675(2020).
[24] Shao Y J, Tang X K, Zhang L et al. On the performance of DCrT-spread-OFDM via water-air OWC system through waves[C](2020).
[25] Lin T R, Huang N, Gong C et al. Preliminary characterization of coverage for water-to-air visible light communication through wavy water surface[J]. IEEE Photonics Journal, 13, 7901013(2021).
[26] Davies M, Chattopadhyay A K. Stokes waves revisited: exact solutions in the asymptotic limit[J]. The European Physical Journal Plus, 131, 69(2016).
[27] Langley R S. On the time domain simulation of second order wave forces and induced responses[J]. Applied Ocean Research, 8, 134-143(1986).
[28] Jefferys E R. Directional seas should be ergodic[J]. Applied Ocean Research, 9, 186-191(1987).
[29] Li J, Luo J H, Li S B et al. Centroid drift of laser beam propagation through a water surface with wave turbulence[J]. Applied Optics, 59, 6210-6217(2020).
Get Citation
Copy Citation Text
Fan Zhang, Jianghua Luo, Jun Li, Tianrui Lin, Chen Gong, Zhengyuan Xu. Characterization and Validation of Beam Transmission Through Wavy Water‐to‐Air Surface[J]. Chinese Journal of Lasers, 2023, 50(19): 1905001
Category: Beam transmission and control
Received: Sep. 23, 2022
Accepted: Nov. 15, 2022
Published Online: Oct. 18, 2023
The Author Email: Luo Jianghua (jhluo_09@foxmail.com)