光学
计算机科学
无源光网络
鉴定(生物学)
信号处理
物理
光学滤波器
光通信
自由空间光通信
图像处理
相位调制
电子工程
光纤
自适应光学
探测理论
光学性能监测
物理光学
集成光学
光放大器
相位共轭
激光束
折射率
分束器
光交叉连接
激光器
电信
作者
Chengzhe Tang,yin zhang,Kaiyu Liu,Yuan Yao,Lei Deng,Qi Yang,Deming Liu,Mengfan Cheng
出处
期刊:Optics Letters
[Optica Publishing Group]
日期:2026-03-09
卷期号:51 (7): 1828-1828
摘要
To address the growing security threats, such as identity spoofing, in passive optical networks (PONs), we propose a delayed self-homodyne-enabled optical fingerprint identification method for optical network units (ONUs). By introducing a delayed self-homodyne (DSH) structure at the receiver, device-dependent fingerprint features-primarily laser phase fluctuations-are effectively incorporated into the intensity signal without an additional local oscillator. Optimized feature extraction schemes are designed to isolate these signatures from intensity modulation interference, which are then classified using a convolutional neural network (CNN). The feasibility and robustness of the scheme are validated through numerical simulations and physical experiments using commercial ONU modules. The results demonstrate that the DSH-enhanced fingerprints provide superior discriminability and maintain high identification accuracy under practical low signal-to-noise ratio conditions. Long-term testing further confirms the temporal stability of the proposed solution, indicating that delayed self-homodyne detection offers a robust and physically interpretable approach to enhancing physical-layer security in next-generation PONs.
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