Research on Orbital Angular Momentum Recognition Technology Based on a Convolutional Neural Network

被引:7
|
作者
Li, Xiaoji [1 ]
Sun, Leiming [1 ]
Huang, Jiemei [1 ]
Zeng, Fanze [1 ]
机构
[1] Guilin Univ Elect Technol, Key Lab Cognit Radio & Informat Proc, Minist Educ, Guilin 541004, Peoples R China
基金
中国国家自然科学基金;
关键词
orbital angular momentum; ocean turbulence; convolutional neural networks; MACHINE; BEAM; PERFORMANCE; SYSTEM; MODES;
D O I
10.3390/s23020971
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In underwater wireless optical communication (UWOC), a vortex beam carrying orbital angular momentum has a spatial spiral phase distribution, which provides spatial freedom for UWOC and, as a new information modulation dimension resource, it can greatly improve channel capacity and spectral efficiency. In a case of the disturbance of a vortex beam by ocean turbulence, where a Laguerre-Gaussian (LG) beam carrying orbital angular momentum (OAM) is damaged by turbulence and distortion, which affects OAM pattern recognition, and the phase feature of the phase map not only has spiral wavefront but also phase singularity feature, the convolutional neural network (CNN) model can effectively extract the information of the distorted OAM phase map to realize the recognition of dual-mode OAM and single-mode OAM. The phase map of the Laguerre-Gaussian beam passing through ocean turbulence was used as a dataset to simulate and analyze the OAM recognition effect during turbulence caused by different temperature ratios and salinity. The results showed that, during strong turbulence C-n(2) = 1.0 x 10(-13)K(2)m(-2/3), when different omega = -1.75, the recognition rate of dual-mode OAM (l = +/- 1 similar to +/- 5, +/- 1 similar to +/- 6, +/- 1 similar to +/- 7, +/- 1 similar to +/- 8, +/- 1 similar to +/- 9, +/- 1 similar to +/- 10) had higher recognition rates of 100%, 100%, 100%, 100%, 98.89%, and 98.67% and single-mode OAM (l = 1 similar to 5, 1 similar to 6, 1 similar to 7, 1 similar to 8, 1 similar to 9, 1 similar to 10) had higher recognition rates of 93.33%, 92.77%, 92.33%, 90%, 87.78%, and 84%, respectively. With the increase in w, the recognition accuracy of the CNN model will gradually decrease, and in a fixed case, the dual-mode OAM has stronger anti-interference ability than single-mode OAM. These results may provide a reference for optical communication technologies that implement high-capacity OAM.
引用
收藏
页数:12
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