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短距离光传输系统中用于集成传感与通信的通用偏置数字子载波复用方案。

Common bias-digital subcarrier multiplexing scheme for integrated sensing and communication in short-reach optical transmission systems.

作者信息

Shi Jin, Han Yu, Li Yahui, Gui Xin, Fu Xuelei, Li Zhengying

出版信息

Opt Express. 2025 Jul 14;33(14):29753-29763. doi: 10.1364/OE.565431.

Abstract

The integration of sensing and communication (ISAC) based on optical fibers has been a key enabling technique to achieve high-speed communication while ubiquitous sensing. In this paper, to ensure the coexistence of communication signal and sensing signal in low-cost optical access networks i.e., intensity modulation/direct detection (IM/DD) based short-reach optical transmission systems, a common bias-digital subcarrier multiplexing (CB-DSCM) scheme is proposed for ISAC signal generation. To assure distributed fiber acoustic sensing (DAS) signal having high spatial resolution and longer detection distance, linear frequency modulation (LFM) pulse compression technique, biased at the null point of the modulator, is used for sensing signal generation at the transmitter, and coherent detection is employed at the receiver. Then, due to the bias voltage at null point, asymmetrically clipped optical orthogonal frequency division multiplexing (ACO-OFDM) signal is utilized to carry communication signal in the IM/DD system. Therefore, both signals can be simultaneously transmitted using the already deployed modulator, enabling integrated sensing and communication in short-reach optical transmission systems. Experimental results demonstrate that, the proposed CB-DSCM scheme can achieve a net bit rate of 3.01 Gb/s with a bit error rate (BER) as low as 6 × 10 over a 19.8 km fiber-optic transmission link, while it can successfully reconstruct various vibration signals with a spatial resolution of 1 m in short-reach optical transmission systems.

摘要

基于光纤的传感与通信集成(ISAC)已成为在实现无处不在的传感的同时实现高速通信的关键 enabling 技术。本文中,为确保低成本光接入网络(即基于强度调制/直接检测(IM/DD)的短距离光传输系统)中通信信号和传感信号的共存,提出了一种用于 ISAC 信号生成的公共偏置数字子载波复用(CB-DSCM)方案。为确保分布式光纤声学传感(DAS)信号具有高空间分辨率和更长的检测距离,在调制器的零点偏置的线性调频(LFM)脉冲压缩技术用于在发射机处生成传感信号,并在接收机处采用相干检测。然后,由于零点的偏置电压,非对称限幅光正交频分复用(ACO-OFDM)信号用于在 IM/DD 系统中承载通信信号。因此,两个信号可以使用已部署的调制器同时传输,从而在短距离光传输系统中实现集成传感和通信。实验结果表明,所提出的 CB-DSCM 方案在 19.8 公里的光纤传输链路上可以实现 3.01 Gb/s 的净比特率,误码率低至 6×10,同时在短距离光传输系统中可以成功重建空间分辨率为 1 米的各种振动信号。

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