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May 9, 2026Journal of Nonlinear Optical Physics & Materials0 citations

Multidimensional underwater optical communication using coaxial polygonal vortex beam encoding

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DWDongmei WeiRWRusong WangYYYangsheng Yuan

Key Points

  • The study aims to enhance underwater optical communication capacity and fidelity using innovative beam encoding techniques.
  • Developed a communication system using polygonal vortex beams and Re-MobileViT recognition network.
  • Employed octal and quaternary coding schemes for encoding grayscale images.
  • Simulated underwater conditions using milk to test the transmission performance.
  • Achieved a transmission accuracy of over 99% in high turbidity conditions.
  • Demonstrated encoding across 16 modes with coaxial combinations.
  • Showed improved robustness against interference with high-precision recognition.

Abstract

Increasing capacity and fidelity remains a primary challenge in underwater optical communication. An innovative and robust underwater optical communication system is proposed combining polygonal vortex beams with an improved Re-MobileViT recognition network. This system uses octal and quaternary coding schemes to encode and decode grayscale images, thereby enabling multidimensional encoding information transmission. The single-beam scheme achieves 8 distinguishable modes, while the coaxial combination scheme expands the codebook to 16 modes. An underwater turbid medium was simulated using milk to evaluate the transmission performance of polygonal vortex beam encoding. Images are transmitted by applying both orbital angular momentum and geometric dimensions for encoding and decoding, allowing the improved Re-MobileViT network to achieve high-precision recognition and improving the system’s robustness against interference. Experimental results demonstrate that the system maintains a transmission accuracy of over 99%, even under high turbidity.

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Cite This Study

Wei et al. (2026) studied this question.

synapsesocial.com/papers/69fed03cb9154b0b82877503https://doi.org/10.1142/s0218863526500293
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