Adaptive Optics Effects on Average Channel Capacity of Oceanic Optical Wireless Communication Systems in Strong Turbulence


Gökçe M. C.

2nd IEEE Global Power, Energy and Communication Conference, GPECOM 2020, Virtual, Izmir, Türkiye, 20 - 23 Ekim 2020, ss.333-338 identifier identifier

  • Yayın Türü: Bildiri / Tam Metin Bildiri
  • Doi Numarası: 10.1109/gpecom49333.2020.9247882
  • Basıldığı Şehir: Virtual, Izmir
  • Basıldığı Ülke: Türkiye
  • Sayfa Sayıları: ss.333-338
  • Anahtar Kelimeler: oceanic optical wireless communication, oceanic turbulence, optical wave propagation, adaptive optics, average channel capacity
  • TED Üniversitesi Adresli: Evet

Özet

© 2020 IEEE.The adaptive optics technique is employed in oceanic optical wireless communication (OOWC) systems to correct wavefront deformations (or aberrations) caused by oceanic turbulence. This way, intensity fluctuations (i.e., scintillation) or power loss in the received signal intensity are reduced, and thus the channel capacity is improved. In this study, the channel capacity of the OOWC system operating in strong oceanic turbulence is evaluated with and without adaptive optics compensation, then a performance comparison is made between the two on a percentage basis. For the channel capacity evaluations, the required optical entities, namely the scintillation index and the signal intensity are predicted by the help of the extended Rytov theory and the Huygens-Fresnel principle, respectively. Zernike filter functions are used to model the turbulence-induced deformations in the wavefront of the Gaussian laser and the operation of adaptive optics in this study can be described as the act of correcting aberrations.