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使用密集蓝绿波分复用的耐浑浊水下无线光通信

Turbidity-tolerant underwater wireless optical communications using dense blue-green wavelength division multiplexing.

作者信息

Zhang Kuokuo, Sun Caiming, Shi Wu, Lin Jing, Li Binghui, Liu Weiwei, Chen Danyuan, Zhang Aidong

出版信息

Opt Express. 2024 Jun 3;32(12):20762-20775. doi: 10.1364/OE.521575.

Abstract

Underwater wireless optical communication (UWOC) has demonstrated high-speed and low-latency properties in clear and coastal ocean water because of the relatively low attenuation 'window' for blue-green wavelengths from 450 nm to 550 nm. However, there are different attenuation coefficients for transmission in ocean water at different wavelengths, and the light transmission more seriously deteriorates with fluctuations in the water turbidity. Therefore, traditional UWOC using a single wavelength or coarse blue-green wavelengths has difficulty tolerating variations in water turbidity. Dense wavelength division multiplexing (WDM) technology provides sufficient communication channels with a narrow wavelength spacing and minimal channel crosstalk. Here, we improve the UWOC in clear and coastal ocean water using dense blue-green WDM. A cost-effective WDM emitter is proposed with directly modulated blue-green laser diodes. Dense wavelength beam combination and collimation are demonstrated in a 20-metre underwater channel from 490 nm to 520 nm. Demultiplexing with a minimum channel spacing of 2 nm is realized by an optical grating. Remarkably, our WDM results demonstrate an aggregate data rate exceeding 10 Gbit/s under diverse water turbidity conditions, with negligible crosstalk observed for each channel. This is the densest WDM implementation with a record channel spacing of 2 nm and the highest channel count for underwater blue-green light communications, providing turbidity-tolerant signal transmission in clear and coastal ocean water.

摘要

由于450纳米至550纳米的蓝绿波长在清澈海水和沿海水域具有相对较低的衰减“窗口”,水下无线光通信(UWOC)已在这些水域展现出高速和低延迟特性。然而,不同波长在海水中传输时具有不同的衰减系数,并且光传输会随着水体浊度的波动而更严重地恶化。因此,使用单一波长或粗蓝绿波长的传统UWOC难以耐受水体浊度的变化。密集波分复用(WDM)技术提供了具有窄波长间隔和最小信道串扰的充足通信信道。在此,我们利用密集蓝绿WDM改进了清澈海水和沿海水域中的UWOC。提出了一种采用直接调制蓝绿激光二极管的经济高效的WDM发射器。在490纳米至520纳米的20米水下信道中演示了密集波长光束组合和准直。通过光栅实现了最小信道间隔为2纳米的解复用。值得注意的是,我们的WDM结果表明,在各种水体浊度条件下,总数据速率超过10 Gbit/s,且每个信道的串扰可忽略不计。这是具有2纳米创纪录信道间隔和水下蓝绿光通信最高信道数的最密集WDM实现,在清澈海水和沿海水域提供了耐浊度的信号传输。

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