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Blue Laser Diode Enables Underwater Communication at 12.4 Gbps

机译:蓝色激光二极管可实现12.4 Gbps的水下通信

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摘要

To enable high-speed underwater wireless optical communication (UWOC) in tap-water and seawater environments over long distances, a 450-nm blue GaN laser diode (LD) directly modulated by pre-leveled 16-quadrature amplitude modulation (QAM) orthogonal frequency division multiplexing (OFDM) data was employed to implement its maximal transmission capacity of up to 10 Gbps. The proposed UWOC in tap water provided a maximal allowable communication bit rate increase from 5.2 to 12.4 Gbps with the corresponding underwater transmission distance significantly reduced from 10.2 to 1.7 m, exhibiting a bit rate/distance decaying slope of −0.847 Gbps/m. When conducting the same type of UWOC in seawater, light scattering induced by impurities attenuated the blue laser power, thereby degrading the transmission with a slightly higher decay ratio of 0.941 Gbps/m. The blue LD based UWOC enables a 16-QAM OFDM bit rate of up to 7.2 Gbps for transmission in seawater more than 6.8 m.
机译:为了在自来水和海水环境中实现长距离的高速水下无线光通信(UWOC),450 nm蓝色GaN激光二极管(LD)直接由预调平的16正交幅度调制(QAM)正交频率进行调制时分多路复用(OFDM)数据用于实现其最大传输容量高达10 Gbps。拟议中的自来水中的UWOC将最大允许通信比特率从5.2增加到12.4µGbps,而相应的水下传输距离从10.2显着降低到1.7µm,展现出-0.847µGbps / m的位速率/距离衰减斜率。当在海水中进行相同类型的UWOC时,杂质引起的光散射会减弱蓝色激光的功率,从而以0.941 Gbps / m的稍高的衰减比使传输性能下降。基于蓝色LD的UWOC能够在高达6.8µm的海水中传输时实现高达7.2µGbps的16-QAM OFDM比特率。

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