使用简化收发器的Δj-OTDR 为光接入网络提供带内传感和通信功能

IF 2.2 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Pallab K. Choudhury;Élie Awwad
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引用次数: 0

摘要

针对下一代光接入网的波分复用(WDM)点对点链路,提出了一种带内集成策略,即通过调制相同波长信道,在通信数据中插入传感探测信号。这种集成是通过探索曼彻斯特编码信号的直流平衡特性实现的,从而有效减少了低频成分,以容纳带内戈莱编码的低频信号作为传感探针。该系统在基于移动或企业光纤的波分复用链路中,利用简单的直接检测接收器,在 20 千米光纤上演示了 10 千兆比特/秒的下行数据。通过使用戈莱编码信号进行信道估计,并在中心局使用相干接收器,利用差分相位敏感光时域反射仪来定位外部扰动。研究结果表明,在接收器端保持足够的输入光功率预算的情况下,可以在 10-3 的前向纠错误码率限制内成功地从集成信号中检索到下行数据。此外,还对后向散射信号进行了分析,以精确检测光纤上同时发生的两个事件,保持 2.1 米的传感空间分辨率和 381 Hz 的最大声学带宽,应变灵敏度低至 15 nϵpp(峰峰值)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-Band Sensing and Communication for Optical Access Networks Using Δϕ-OTDR With Simplified Transceivers
An in-band integration strategy is proposed by inserting a sensing probe signal over communication data by modulating the same wavelength channel for next-generation optical access network targeting wavelength-division multiplexing (WDM) point-to-point links. The integration is done by exploring the dc-balanced property of a Manchester-coded signal allowing an effective reduction of low-frequency components to accommodate an in-band Golay-coded lower frequency signal that acts as a sensing probe. The system is demonstrated for 10-Gb/s downstream data over a 20-km fiber with a simple direct-detection receiver in a mobile- or enterprise-fronthaul-based WDM link. Differential-phase-sensitive optical time-domain reflectometry is used to locate external perturbations by using the Golay-coded signal for channel estimation and a coherent receiver at the central office. The presented results show that the downstream data can be successfully retrieved from the integrated signal within a pre-forward error correction bit error rate limit of 10 −3 maintaining enough input optical power budget at the receiver side. Moreover, the backscattered signal is analyzed for accurate detection of two simultaneous events applied over the fiber maintaining a sensing spatial resolution of 2.1 m and a maximum acoustic bandwidth of 381 Hz with a strain sensitivity down to 15 nϵ pp (peak to peak).
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来源期刊
IEEE Sensors Letters
IEEE Sensors Letters Engineering-Electrical and Electronic Engineering
CiteScore
3.50
自引率
7.10%
发文量
194
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