The impact of link orientation in underwater optical wireless communication systems

Laura J. Johnson, R. Green, M. Leeson
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引用次数: 9

Abstract

Underwater optical wireless has two distinct modes of communication depending on the choice of transmitter technology; short-ranged dispersive LED links (<;20m) and longdistance, narrow laser links. In both cases, existing propagation models use a single-value estimation of attenuation but this is not accurate for the latter. Changes in attenuation are caused by variable composition where the natural Gaussian profile of chlorophyll concentration with depth is the biggest contributing factor. With this in mind, this research looks at how varying the orientation of communication affects the average transmission for longer ranged underwater optical links. This is repeated for areas with low, medium and high levels of surface turbidity at 50m depth increments. Highest attenuation in found in links which have the largest portion transmitted through a chlorophyll peak, this occurs between 15-45° for both high and mid turbidity levels which correspond to the peaks below 0m and 50m respectively. This study also calculates how seawater refractive index gradients with depth alter the beam direction for different optical wireless links at angles to the vertical. It is found that angles closer to the vertical undergo higher displacements from their receivers as the gradient over which they are communicating is greater.
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链路方向对水下光无线通信系统的影响
根据发射机技术的选择,水下光无线有两种不同的通信模式;短距离色散LED链路(<;20m)和长距离窄激光链路。在这两种情况下,现有的传播模型都使用单值衰减估计,但这对后者来说并不准确。衰减的变化是由不同的组成引起的,其中叶绿素浓度随深度的自然高斯分布是最大的贡献因素。考虑到这一点,本研究着眼于改变通信方向如何影响长距离水下光链路的平均传输。这是重复的低,中,高水平的表面浑浊在50米深度增量区域。在通过叶绿素峰传输的最大部分的链路中发现了最高的衰减,这发生在15-45°之间,高浊度和中浊度水平分别对应于0米和50米以下的峰。本研究还计算了海水折射率随深度的变化如何改变与垂直角度不同的光纤无线链路的波束方向。它被发现,角度更接近垂直经历更高的位移从他们的接收器,因为他们正在通信的梯度更大。
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