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Scintillation index and BER performance for optical wave propagation in anisotropic underwater turbulence under the effect of eddy diffusivity ratio

机译:涡流扩散率效应下各向异性水下湍流中光波传播的闪烁指数和BER性能

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摘要

Underwater optical communication has been a promising technology but is severely affected by underwater turbulence due to the resulting fluctuations in the index of refraction. In this paper, a revised spatial power spectrum model is obtained that considers the refraction index to be a function of the eddy diffusivity ratio, assuming the underwater turbulence is anisotropic. The scintillation indices for both plane and spherical waves that propagate in underwater turbulence are derived based on this model. Thereafter, the performance of an optical communication system, i.e., the outage probability and bit error rate, with the associated aperture averaging effect is considered. The simulation results demonstrate that temperature-induced and salinity-induced turbulence have distinct influences on the scintillation index and consequently result in different system performances. In addition, the variation in the eddy diffusivity ratio in some intervals induces more complicated results for underwater optical communication. Moreover, the effect of the receiver aperture diameter on the aperture averaging factor is presented in anisotropic underwater turbulence. Such an effect is more obvious in the plane wave case than in the spherical wave case. These results can find potential application in the engineering design of optical communication systems in an underwater environment. (C) 2020 Optical Society of America
机译:水下光学通信一直是有希望的技术,但由于折射率指数的波动而受到水下湍流的严重影响。在本文中,获得了经修订的空间功率谱模型,其认为折射率是涡流扩散比的函数,假设水下湍流是各向异性的。基于该模型导出在水下湍流中传播的平面和球形波的闪烁指数。此后,考虑光通信系统的性能,即停电概率和误码率,具有相关的孔径平均效果。模拟结果表明,温度诱导和盐度诱导的湍流对闪烁指数具有不同的影响,因此导致不同的系统性能。另外,以某种间隔的涡流漫射比的变化引起了水下光学通信的更复杂的结果。此外,在各向异性水下湍流中提出了接收器孔径直径对孔径平均因子的影响。在平面波形壳体中比在球面波盒中更为明显。这些结果可以在水下环境中的光通信系统的工程设计中找到潜在的应用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第8期|共8页
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