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Effect of Random Sea Surface on Downlink Underwater Wireless Optical Communications

机译:随机海面对下行链路水下无线光通信的影响

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摘要

Most previous works on underwater wireless optical communications (UWOC) assume an ideal horizontal link geometry or a vertical through-the-surface link geometry. The performance of vertical buoy-based surface-to-bottom (downlink) UWOC systems where the source is located on the sea surface has not been studied yet to the best of our knowledge. In practice, the performance of buoy-based downlink UWOC systems will be affected by both the random sea surface slopes caused by wind and scattering property of seawater. In this letter, we take these two factors into account and investigate the bit-error-rate (BER) performance of this downlink UWOC system. We develop a theoretical model to numerically characterize the relationship among transmit power, link range, wind speed, BER and water types for downlink UWOC system. Numerical results suggest the system BER performance degraded by wind speed can be compensated as the turbidity of seawater increases.
机译:先前有关水下无线光通信(UWOC)的大多数工作都假定理想的水平链路几何形状或垂直的整个表面链路几何形状。据我们所知,尚未研究基于垂直浮标的地面到地面(下行)UWOC系统的性能,其中源位于海面上。在实践中,基于浮标的下行UWOC系统的性能将受风和海水的散射特性所引起的随机海面坡度的影响。在这封信中,我们考虑了这两个因素,并研究了该下行UWOC系统的误码率(BER)性能。我们开发了一个理论模型,以数值表征下行UWOC系统的发射功率,链路范围,风速,BER和水类型之间的关系。数值结果表明,随着海水浊度的增加,风速降低的系统BER性能可以得到补偿。

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