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Effects and Constraints of Optical Filtering on Ambient Light Suppression in LED-Based Underwater Communications

机译:基于LED的水下通信中滤光对环境光抑制的影响和约束

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摘要

Optical communication promises to be a high-rate supplement for acoustic communication in short-range underwater applications. In the photic zone of oceanic and coastal waters, underwater optical communication systems are exposed by remaining sunlight. This ambient light generates additional noise in photodetectors, thus degrading system performance. This effect can be diminished by the use of optical filters. This paper investigates light field characteristics of different water types and potential interactions with optical underwater communication. A colored glass and different thin film bandpass filters are examined as filter/detector combinations under varying light and water conditions, and their physical constraints are depicted. This is underlined by various spectral measurements as well as optical signal-to-noise ratio calculations. The importance of matching the characteristics of the light emitting diode (LED) light source, the photodetector, and the filter on the ambient conditions using wider angle of incidents is emphasized.
机译:光通信有望成为短距离水下应用中声通信的高速补充。在海洋和沿海水域的光区,水下光通信系统被残留的阳光所暴露。这种环境光会在光电探测器中产生额外的噪声,从而降低系统性能。可以通过使用滤光片来减小这种影响。本文研究了不同水类型的光场特性以及与水下光学通信的潜在相互作用。将彩色玻璃和不同的薄膜带通滤光片作为滤光片/检测器组合,在变化的光和水条件下进行检查,并描述其物理约束。各种光谱测量以及光信噪比计算都强调了这一点。强调了使用较宽的入射角在环境条件下匹配发光二极管(LED)光源,光电探测器和滤光片的特性的重要性。

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