Statistical Analysis on the Impact of Tropospheric Temperature and Relative Humidity on Downlink Satellite Communication System over Warri, Delta State

Opara C. Ezekwesili, J. T. Zhimwang, E. P. Ogherohwo, O. S. Shaka
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引用次数: 1

Abstract

This study was aimed at analyzing the effect of temperature and relative humidity on downlink satellite communication systems over Warri, in Delta State, Nigeria. The data used in this study were temperature, relative humidity and radio signal strength (RSS) obtained from the Nigeria Meteorological Agency (NIMET) for the years 2018 and 2019 respectively, both from January to December. Davis Vantage Vue weather station was used to measure the temperature and relative humidity while Spectrum analyzer was used to measure RSS. Both instruments were set to function simultaneously. Results obtained for all the months shows that the level of radio signal strength under the influence of temperature is higher either RSS ≥ 65% compare to that of relative humidity either RSS ≤ 64% which also fluctuate the level of RSS on daily basis, throughout the years under review. It was realized that there is a variation in the refractive index of the medium through which the radiowaves are propagated, due to the variations in the temperature and relative humidity, these adversely affect the received signals strength over the downlink satellite communication systems. The results obtained from this study will serve as guide for link budget design for satellite communication operators within the study. Therefore, similar study of this kind is recommended in other locations experiencing severe weather conditions.
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对流层温度和相对湿度对三角洲州瓦里地区下行卫星通信系统影响的统计分析
本研究旨在分析尼日利亚三角洲州瓦里上空温度和相对湿度对下行卫星通信系统的影响。本研究使用的数据分别是从尼日利亚气象局(NIMET)获得的2018年和2019年1月至12月的温度、相对湿度和无线电信号强度(RSS)。使用Davis Vantage Vue气象站测量温度和相对湿度,使用频谱分析仪测量RSS。两种仪器被设置为同时工作。各月份的结果表明,受温度影响的无线电信号强度水平(相对相对湿度)高于相对相对湿度(相对相对湿度)或高于相对相对湿度(相对相对湿度)或高于相对相对湿度(相对相对湿度)或高于相对相对湿度(相对相对湿度)或高于相对相对湿度(相对相对湿度)或高于相对相对湿度(相对相对湿度)或低于相对相对湿度(相对相对湿度)。人们认识到,由于温度和相对湿度的变化,无线电波传播的介质的折射率发生了变化,这些变化对下行链路卫星通信系统上接收到的信号强度产生了不利影响。本研究的结果将为本研究范围内卫星通信运营商的链路预算设计提供指导。因此,建议在其他遇到恶劣天气条件的地区进行类似的研究。
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