850 nm能见度下雾衰减的理论和经验消光系数

Shahnawaz Shah, S. Mughal, S. Memon
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引用次数: 7

摘要

自由空间光学(FSO)是指利用激光在自由空间中以点对点链路传输红外信号,并通过光电二极管接收的光学技术。现在,一天的无线光通信是最可取的最后一英里解决方案。在过去的15年中,研究人员致力于设计将能见度值转换为雾衰减因子的雾模型。在文献中,采用理论和经验两种方法来估计雾的衰减因子。在理论方法中,采用严格的Mie散射理论推导出雾的衰减公式,选择了Kruse、Kim、Al Naboulsi平流和对流、Ferdinandov和Grabner 6种基于理论方法的雾模型。这些模式将气象站可用的能见度统计数据转换为预测特定的光学衰减。在经验方法中,采用硬件设置形式,统计测量发射和接收侧的能见度和光功率,并通过回归分析得到两者之间的关系。从文献中选取了三种不同的基于经验的模型,分别是大陆雾、密集海洋雾和受控实验室条件下的模型。选取了理论模型和实证模型,在Matlab中进行了仿真,并对对比结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical and empirical based extinction coefficients for fog attenuation in terms of visibility at 850 nm
Free space optics (FSO) is the transmission of Infrared (IR) signals through LASER in free space with point to point link and receiving through photo diode. Now a days FSO is most preferable last mile solution. In last 15 years researchers focused for designing fog model which convert the visibility value in fog attenuation factor. In the literature two approaches, theoretical and empirical, were used for estimating fog attenuation factor. In theoretical approach fog attenuation formula were derived by using rigorous Mie scattering theory, six fog models based on theoretical approach were selected these are Kruse, Kim, Al Naboulsi advection and convection, Ferdinandov and Grabner models. These models convert the visibility statistics available on meteorological sites into predict specific optical attenuation. In empirical approaches, fog models were derived by a hardware setup form which visibility and optical power at both transmitting and receiving sides were measured statistically and a relation is obtained by applying regression analysis. Three different empirical based models were selected from the literature on the basis of their practical deployment such as continental fog, dense maritime fog and under controlled laboratory condition setup. Selected nine models including theoretical and empirical were simulated in Matlab and comparison results is discussed in this paper.
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