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Scintillations of RGB laser beams in weak temperature and salinity-induced oceanic turbulence

机译:RGB激光束在弱温和盐度诱导的海洋湍流中的闪烁

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Fluctuations in the optical signal intensity, known as scintillations, can severely degrade the performance of underwater wireless optical communication (UWOC) links. Using measurements data, this paper focuses on the variations of scintillations of red, green and blue (RGB) laser beams propagating in various weak turbulent water channels. The results show shorter wavelengths experience higher scintillation under the same turbulence. Moreover, the scintillation index decreases when the channel turbulence is dominated by temperature fluctuation. Furthermore, bit-error-rate (BER), which is a critical communication performance evaluation criterion, is also measured for the green laser under such turbulences. It is found that the turbulent UWOC link can still be retrievable in terms of BER performance when the turbulence is below a certain threshold. A steep increasing in BER occurs after the threshold.
机译:光信号强度的波动,称为闪烁,可以严重降低水下无线光通信(UWOC)链路的性能。使用测量数据,本文重点介绍在各种弱湍流水通道中传播的红色,绿色和蓝色(RGB)激光束的闪烁的变化。结果表明,在相同的湍流下,波长的波长体验更高的闪烁。此外,当通道湍流以温度波动支配时,闪烁指数降低。此外,还为临界通信性能评估标准的误码率(BER)也在这种湍流下测量绿色激光器。发现当湍流低于某个阈值时,仍然可以在BER性能方面可检索湍流UWOC链路。在阈值之后发生在Ber中的陡峭增加。

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