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BER evaluations for multimode beams in underwater turbulence

机译:水下湍流中多模光束的BER评估

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摘要

In underwater optical communication links, bit error rate (BER) is an important performance criterion. For this purpose, the effects of oceanic turbulence on multimode laser beam incidences are studied and compared in terms of average BER (< BER >), which is related to the scintillation index. Based on the log-normal distribution, < BER > is analysed for underwater turbulence parameters, including the rate of dissipation of the mean squared temperature, the rate of dissipation of the turbulent kinetic energy, the parameter that determines the relative strength of temperature and salinity in driving index fluctuations, the Kolmogorov microscale length and other link parameters such as link length, wavelength and laser source size. It is shown that use of multimode improves the system performance of optical wireless communication systems operating in an underwater medium. For all the investigated multimode beams, decreasing link length, source size, the relative strength of temperature and salinity in driving the index fluctuations, the rate of dissipation of the mean squared temperature and Kolmogorov microscale length improve the < BER >. Moreover, lower < BER > values are obtained for the increasing wavelength of operation and the rate of dissipation of the turbulent kinetic energy in underwater turbulence.
机译:在水下光通信链路中,误码率(BER)是重要的性能指标。为此,研究了湍流对多模激光束入射的影响,并根据与闪烁指数有关的平均BER()进行了比较。根据对数正态分布,分析了的水下湍流参数,包括均方温度的耗散率,湍流动能的耗散率,确定温度和盐度相对强度的参数在驱动指数波动中,Kolmogorov微米级长度和其他链路参数(例如链路长度,波长和激光源大小)会有所变化。结果表明,使用多模可以改善在水下介质中运行的光学无线通信系统的系统性能。对于所有研究的多模光束,减小的链路长度,源尺寸,驱动盐指数波动的温度和盐度的相对强度,均方温度的耗散率和Kolmogorov微米级长度都会改善。此外,对于增加的工作波长和水下湍流中湍动能的耗散率,可以获得较低的值。

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