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High-speed underwater wireless optical communications: from a perspective of advanced modulation formats [Invited] 被引量:5

High-speed underwater wireless optical communications: from a perspective of advanced modulation formats [Invited]
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摘要 In this paper,recent advances in underwater wireless optical communication(UWOC)are reviewed for both LED-and LD-based systems,mainly from a perspective of advanced modulation formats.Volterra series-based nonlinear equalizers,which can effectively counteract the nonlinear impairments induced by the UWOC system components,are discussed and experimentally demonstrated.Both the effectiveness and robustness of the proposed Volterra nonlinear equalizer in UWOC systems under different water turbidities are validated.To further approach the Shannon capacity limit of the UWOC system,the probabilistic constellation shaping technique is introduced,which can overcome the inherent gap between a conventional regular quadrature amplitude modulation(QAM)format and the Shannon capacity of the channel.The experimental results have shown a significant system capacity improvement compared to the cases using a regular QAM. In this paper, recent advances in underwater wireless optical communication(UWOC) are reviewed for both LED-and LD-based systems, mainly from a perspective of advanced modulation formats. Volterra series-based nonlinear equalizers, which can effectively counteract the nonlinear impairments induced by the UWOC system components, are discussed and experimentally demonstrated. Both the effectiveness and robustness of the proposed Volterra nonlinear equalizer in UWOC systems under different water turbidities are validated.To further approach the Shannon capacity limit of the UWOC system, the probabilistic constellation shaping technique is introduced, which can overcome the inherent gap between a conventional regular quadrature amplitude modulation(QAM) format and the Shannon capacity of the channel. The experimental results have shown a significant system capacity improvement compared to the cases using a regular QAM.
作者 Chao Fei Xiaojian Hong Ji Du Guowu Zhang Yuan Wang Xiaoman Shen Yuefeng Lu Yang Guo Sailing He 费超;洪晓建;杜及;张国务;王远;申晓曼;陆岳锋;郭旸;何赛灵(Centre for Optical and Electromagnetic Research,National Engineering Research Center for Optical Instruments,Zhejiang University,Hangzhou 310058,China;Ningbo Research Institute,Zhejiang University,Ningbo 315100,China)
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2019年第10期72-79,共8页 中国光学快报(英文版)
基金 supported in part by the National Key Research and Development Program of China(No.2018YFC1407500) National Natural Science Foundation of China(NSFC)(No.11621101) the funding of Ningbo Research Institute
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