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利用子带多模全排列 CAP 结合 SNR 加权检测器和多通道 DFE,实现 90-m/560-Mbps 水下无线光通信。

90-m/560-Mbps underwater wireless optical communication utilizing subband multiple-mode full permutation CAP combined with an SNR-weighted detector and multi-channel DFE.

出版信息

Opt Express. 2023 Apr 10;31(8):13154-13168. doi: 10.1364/OE.487110.

DOI:10.1364/OE.487110
PMID:37157459
Abstract

In this paper, a joint signal processing scheme including a subband multiple-mode full permutation carrierless amplitude phase modulation (SMMP-CAP), signal-to-noise ratio weighted detector (SNR-WD), and multi-channel decision feedback equalizer (MC-DFE) is proposed to mitigate the bandwidth limitation of a high-speed long-reach underwater wireless optical communication (UWOC) system. Referring to the trellis coded modulation (TCM) subset division strategy, 16 quadrature amplitude modulation (QAM) mapping set is divided into four 4-QAM mapping subsets by SMMP-CAP scheme. An SNR-WD and an MC-DFE are employed to enhance the demodulation effect of this system in a fading channel. In a laboratory experiment, the minimal required received optical powers (ROPs) for data rates of 480 Mbps, 600 Mbps, and 720 Mbps, at hard-decision forward error correction (HD-FEC) threshold of 3.80 × 10, are -32.7 dBm, -31.3 dBm, and -25.5 dBm, respectively. Moreover, the proposed system successfully achieves a data rate of 560 Mbps in a swimming pool with a transmission distance up to 90 m and a total attenuation measured to be 54.64 dB. To the best of our knowledge, this is the first time to demonstrate a high-speed, long-distance UWOC system by employing an SMMP-CAP scheme.

摘要

在本文中,提出了一种联合信号处理方案,包括子带多模式全置换无载波幅相调制(SMMP-CAP)、信噪比加权检测器(SNR-WD)和多通道判决反馈均衡器(MC-DFE),以减轻高速长距离水下无线光通信(UWOC)系统的带宽限制。参考格状编码调制(TCM)子集划分策略,16 正交幅度调制(QAM)映射集通过 SMMP-CAP 方案分为四个 4-QAM 映射子集。SNR-WD 和 MC-DFE 用于增强衰落信道中该系统的解调效果。在实验室实验中,在硬判决前向纠错(HD-FEC)阈值为 3.80×10 的情况下,数据速率为 480 Mbps、600 Mbps 和 720 Mbps 时,所需的最小接收光功率(ROP)分别为-32.7 dBm、-31.3 dBm 和-25.5 dBm。此外,该系统在传输距离达 90 m 的游泳池中成功实现了 560 Mbps 的数据速率,总衰减测量值为 54.64 dB。据我们所知,这是首次通过采用 SMMP-CAP 方案来演示高速、长距离 UWOC 系统。

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