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Performance evaluation of perfect transmission of optical vortices in an underwater optical communication system

机译:水下光通信系统中光涡旋完美传输的性能评价

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摘要

In this paper, we experimentally evaluated the performance of underwater optical communications using 1 Mbit/s on-off keying signals of perfect optical vortices. Perfect optical vortices generated by Fourier transformation of the Bessel-Gaussian beam are propagated through a 2.6 m underwater medium and affected by various water conditions such as stagnant water, water flow, temperature difference, and air bubbles, so beam wander and fluctuation of the signal are studied. Air bubbles have the maximum effect on signal fluctuations and beam wanders. Measurement of the system bit error rate (BER) based on the signal-to-noise ratio (SNR) for these situations matches the results of wandering and fluctuations. The system BER is studied for different values of SNR, and its value is more degraded due to the air bubbles. (C) 2018 Optical Society of America
机译:在本文中,我们通过完美光学涡流的1 Mbit / s开关键控信号进行了通过实验评估了水下光通信的性能。 由贝塞尔高斯梁的傅里叶变换产生的完美光学涡流通过2.6米水下介质传播,受到各种水条件的影响,例如停滞水,水流,温差和气泡,因此光束徘徊和信号波动 研究过。 气泡对信号波动和梁徘徊具有最大影响。 基于这些情况的信噪比(SNR)测量系统误码率(BER)与徘徊和波动的结果匹配。 研究了SNR的不同值的系统BER,并且由于气泡,其值更加劣化。 (c)2018年光学学会

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