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An Empirical Expression for Attenuation Coefficient Evaluation of FSO Links During Night-Time Over Maritime Area of Piraeus Port in Greece

机译:希腊比雷埃夫斯港海域夜间FSO链路衰减系数评估的经验表达式

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Free space optical (FSO) systems are extensively used in modern communication networks, due to the high performance and security they can achieve. However, their performance is strongly affected by the weather conditions and the various atmospheric phenomena. In this work, the influence of the atmospheric condition on an FSO system installed in maritime environment is experimentally investigated. More precisely, an empirical experimental model for the attenuation coefficient/ optical power received based on the impact of main atmospheric parameters, i.e. relative humidity, temperature, etc, will be extracted for an FSO system in the maritime environment of the port of Piraeus, during night-time. This model will be validated comparing the measured attenuation coefficient/ optical power received to the one that is estimated from the experimental model. The existence of such a model will be a very useful and important tool in the deployment of modern FSO communication networks, as the expected performance of the system will be estimated with high precision through basic atmospheric parameters of the area which can be easily estimated.
机译:自由空间光学(FSO)系统由于可以实现的高性能和安全性而广泛用于现代通信网络中。但是,它们的性能受天气条件和各种大气现象的强烈影响。在这项工作中,实验研究了大气条件对海上环境中安装的FSO系统的影响。更准确地说,在比雷埃夫斯港口海上环境中,对于FSO系统,将提取基于主要大气参数(即相对湿度,温度等)影响的衰减系数/光功率的经验实验模型。夜间。通过比较所测得的衰减系数/接收到的光功率与根据实验模型估算出的衰减系数/光功率,可以验证该模型。这种模型的存在对于现代FSO通信网络的部署将是非常有用和重要的工具,因为可以通过该区域的基本大气参数以高精度估算系统的预期性能。

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