High-accuracy mode recognition method in orbital angular momentum optical communication system
Метод высокоточного распознавания мод в оптической системе связи с орбитальным угловым моментом
2021-10-11
SCID: 54.1/ubtdmns9
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Gaussian smoothing filterOAM mode recognitionatmospheric turbulencefree-space optical communicationorbital angular momentum
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Abstract (AI)
Vortex optical communication has been a hot research field in recent years. A key step is mode recognition in the orbital angular momentum (OAM) free-space optical (FSO) communication system. In this article, we propose an OAM mode recognition method based on image recognition technology, which uses the interferogram between the vortex beam and the Gaussian beam to identify the OAM mode. In order to resist the influence of atmospheric turbulence on the recognition accuracy, we added a Gaussian smoothing filter into the recognition process. Moreover, we used random phase screens to generate interferogram sets at distances of 1 km and 2 km. The verification result shows that the proposed scheme produces high identification accuracy for the distorted optical field. The average accuracy can reach 100% and 87.78% under the conditions of medium-and strong-turbulence levels, respectively. It is anticipated that these results might be helpful for improving the reliability of the OAM-FSO communication system in the future.
Key Findings
1
A Gaussian smoothing filter is incorporated to improve recognition robustness against atmospheric turbulence.
2
A mode-recognition method identifies orbital angular momentum using interferograms formed between vortex and Gaussian beams.
3
Random phase screens generate distorted interferogram datasets for 1 km and 2 km propagation distances.
4
The method achieves average recognition accuracies of 100% under medium turbulence and 87.78% under strong turbulence.
5
The results indicate potential for improving the reliability of OAM free-space optical communication systems.
Research Object
OAM free-space optical communication system and its vortex-beam optical fields under atmospheric turbulence
Research Subject
Accuracy and turbulence robustness of OAM mode recognition from vortex–Gaussian interferograms
Publication Details
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2021-10-11
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