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基于蓝光发光二极管的水下光通信系统中使用空间分集接收的实时光学离散傅里叶变换扩频离散多音信号传输的实验演示。

Experimental demonstration of real-time optical DFT-S DMT signal transmission for a blue-LED-based UWOC system using spatial diversity reception.

作者信息

Chen Ruilin, Du Ji, Wang Yuan, Fei Chao, Zhang Tianyi, Tian Jiahan, Zhang Guowu, Hong Xiaojian, He Sailing

出版信息

Appl Opt. 2023 Jan 20;62(3):541-551. doi: 10.1364/AO.478405.

DOI:10.1364/AO.478405
PMID:36821256
Abstract

Underwater wireless optical communication (UWOC) has broad prospects in underwater real-time applications. We design and experimentally demonstrate a real-time discrete Fourier transform spread discrete multi-tone (DFT-S DMT) signal transmission based on a field programmable gate array for a blue-LED-based UWOC system with a data rate of up to 30 Mbps over a 15-m underwater channel. The architecture and usage of an on-chip resource as well as power consumption are analyzed and discussed. To reduce the impacts of multipath fading and received intensity fluctuation, spatial diversity reception is also introduced. Furthermore, the receiver sensitivity at a specified bit error rate (BER) threshold and the quality of the images are evaluated using three types of Reed-Solomon (RS) codes. At the BER threshold of 10, over 2.8-dB receiver sensitivity improvement is obtained by the DFT-S DMT scheme with the RS (64, 56) code as compared to the uncoded one at the data rate of 30 Mbps. The performance of BER, color difference, and structural similarity in the image transmission of DFT-S DMT is superior to that of the conventional hard clipping quadrature amplitude modulation DMT in a high-data-rate region because of the low peak-to-average-power ratio and ability to mitigate high-frequency fading in a band-limited UWOC system. With schemes of the RS code, DFT-S, and diversity reception, error-free transmission of images is achieved over a 15-m water channel. The proposed UWOC system has the advantages of low power consumption and portability, which foresees a bright future in underwater applications over short to moderate distances.

摘要

水下无线光通信(UWOC)在水下实时应用中具有广阔前景。我们设计并通过实验演示了一种基于现场可编程门阵列的实时离散傅里叶变换扩频离散多音(DFT-S DMT)信号传输,用于基于蓝光发光二极管的UWOC系统,在15米水下信道上的数据速率高达30Mbps。分析并讨论了片上资源的架构和使用情况以及功耗。为了减少多径衰落和接收强度波动的影响,还引入了空间分集接收。此外,使用三种类型的里德 - 所罗门(RS)码评估了在指定误码率(BER)阈值下的接收机灵敏度和图像质量。在误码率阈值为10时,与未编码的情况相比,采用RS(64,56)码的DFT-S DMT方案在30Mbps数据速率下可获得超过2.8dB的接收机灵敏度提升。由于峰均功率比低且能够减轻带限UWOC系统中的高频衰落,DFT-S DMT在高数据速率区域的图像传输中的误码率、色差和结构相似性性能优于传统的硬限幅正交幅度调制DMT。通过RS码、DFT-S和分集接收方案,在15米水信道上实现了图像的无差错传输。所提出的UWOC系统具有低功耗和便携性的优点,在短到中等距离的水下应用中有着光明的前景。

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