热带地区雨降数字DTH链路补偿模式的确定

O. Obiyemi
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引用次数: 0

摘要

ku波段卫星在全球覆盖和宽带可用性方面仍然是数字电视服务最具成本效益的分销渠道。然而,由于降雨导致的信号衰减仍然是影响接收质量和持续可用性的祸根。晴空条件下,Ku-satellite与地面站之间的最小信号损耗约为205db。降雨量和地点的纬度进一步加剧了这种最小信号衰减。现有报告的研究工作主要局限于模拟降雨引起的衰减,而没有将研究成果以适当的缓解技术转化为补偿产品。本研究旨在为降雨引起的数字卫星电视服务开发一个强大的补偿模型,以提高尼日利亚的服务质量和可用性,其具体目标是确定补偿数字卫星电视下行链路上信号衰减的最佳碟形天线尺寸。所采用的方法包括从国际电信联盟-无线电通信(ITU-R)尼日利亚降雨最严重的地区收集降雨数据。确定了适合尼日利亚不同地区的盘子大小。推导了雨降DTH链路的补偿模型;无论尼日利亚是否有暴雨,对于48dbw卫星足迹,1.5 m的实际天线尺寸都足以补偿Ku卫星信号衰减。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Determination of a Compensation Model for Rain Degraded Digital DTH Links over a Tropical Location
Ku-band satellite remains the most cost-effective distribution channel for digital television services in terms of global coverage and wide bandwidth availability. However, signal attenuation due to rain remains the bane of the reception quality and the continuous availability. In the clear-sky, the minimum signal loss between a Ku-satellite and an earth station is about 205 dB. The amount of rain rate and the site’s latitude further compound this minimum signal attenuation. Existing reported research works are mainly limited to modelling of rain-induced attenuation without porting research findings into compensation product in terms of appropriate mitigation technique. This study is aimed at developing a robust compensation model for the rain-induced digital satellite television services for an improved quality and availability of service in Nigeria, with a specific objective of determining the optimal dish size for compensating the signal attenuation on the digital satellite TV downlink. The methodology employed involves rain data collection from the International Telecommunication Union-Radiocommunication (ITU-R) worst rain zone in Nigeria. The determination of appropriate dish sizes for different parts of Nigeria was carried out. A compensation model was derived for the rain degraded DTH link; and practical dish size of 1.5 m, for 48 dBW satellite footprint, was found to be adequate for compensating Ku satellite signal attenuation, regardless of rainstorm in Nigeria.
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