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Solar rejection in laser based underwater communication systems

机译:基于激光的水下通信系统的太阳能抑制

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摘要

This article provides a numerical study of the expected improvements in an underwater optical system given by a single-mode laser diode operating within a Fraunhofer line in a coastal water type. The system performance is examined for a silicon PIN direct-detection receiver in the euphotic zone. The solar irradiance, modelled as white noise, is evaluated when using a lithium niobate interference and a birefringent filter with different field-of-view (FOV) characteristics in a clear sky situation. The results of this analysis show the inverse dependence of the signal-to-noise (SNR) on the FOV, along with the significant improvement in the receiver sensitivity given by a narrow optical bandpass filter (OBPF).
机译:本文对在沿海水域的弗劳恩霍夫(Fraunhofer)线内运行的单模激光二极管提供的水下光学系统的预期改进进行了数值研究。对于在富光区的硅PIN直接检测接收器,检查了系统性能。在晴朗的天空情况下,使用铌酸锂干扰物和具有不同视场(FOV)特性的双折射滤光片时,将评估建模为白噪声的太阳辐射。分析结果表明,信噪比(SNR)与FOV呈反比关系,同时窄光学带通滤波器(OBPF)可以显着提高接收器灵敏度。

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