Evaluation of simulated rain-based attenuation techniques at k-v frequency bands for satellite services under different modulation techniques over Southwestern Nigeria

J. Ojo, K. Adedayo, A. N. Uchegbu
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Abstract

Rain-based attenuation (RBA) is a major deteriorating factor affecting radio wave signals operating at microwave and millimetre wave bands for a typical Earth-Space Communication Link (ESCL). Although the international telecommunication union (ITU) recommended a standard model for predicting RBA along the terrestrial and ESCL, the technique underperforms in tropical environments. However, the model can be supported by appropriate modulation to enhance link performance. The present study assesses the performance of selected RBA models, namely the ITU, Moupfouma, and Garcἱa-Lὁpez models based on rain types for K-V frequency bands over some selected locations in Southwestern Nigeria. Link performance was further tested based on different modulation scaling to minimize signal degradation. The result shows that Garcίa-Lόpez and ITU models performed well at low rain rate R ≤2 mm/h but underestimated at higher rain rates (except thunderstorms rain type) at the high-frequency band. However, the Moupfouma model performed well for all the rain types irrespective of the selected frequency band, while the ITU model underestimated attenuation for R 30 mm/h (thunderstorm) rain type from the K-V band frequency, Garcia Lopez underestimates the RBA value for R 5 mm/h up to the Ka frequency band. Considering the modulation scaling on link performance shows that the bit-error-rate (BER) will severely degrade with a high rain rate compared to the low rain rate across different frequencies. The BER for 8-PPM outperforms the other types of modulation schemes that were used in this study. Overall results revealed that modulation technique DPSK with selective combining diversity gave a marginal improvement with the increase in link distance and operating frequency. Key words: ESCL, rain attenuation models, modulation techniques, K-V frequency bands.
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尼日利亚西南部不同调制技术下卫星业务k-v频段模拟雨基衰减技术的评估
在典型的地空通信链路(ESCL)中,雨基衰减是影响微波和毫米波波段无线电波信号恶化的主要因素。尽管国际电信联盟(ITU)推荐了一种标准模型来预测沿陆地和ESCL的RBA,但该技术在热带环境中表现不佳。然而,该模型可以通过适当的调制来支持,以提高链路性能。本研究根据尼日利亚西南部一些选定地点K-V频段的降雨类型,评估了选定的RBA模型的性能,即ITU、Moupfouma和Garc ο a-L ο pez模型。进一步测试了基于不同调制比例的链路性能,以最小化信号退化。结果表明,garc - lpez和ITU模型在低雨率R≤2 mm/h时表现良好,但在高频高雨率(雷暴雨类型除外)时表现较差。然而,Moupfouma模型在所有降雨类型中都表现良好,而ITU模型低估了r30mm /h(雷暴)降雨类型从K-V频段频率的衰减,Garcia Lopez低估了r5mm /h至Ka频段的RBA值。考虑调制尺度对链路性能的影响表明,在不同频率下,高降雨率比低降雨率会严重降低误码率。8-PPM的误码率优于本研究中使用的其他类型的调制方案。结果表明,采用选择性组合分集的DPSK调制技术,随着链路距离和工作频率的增加,其性能有一定的提高。关键词:ESCL,雨衰减模型,调制技术,K-V频段。
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来源期刊
International Journal of Physical Sciences
International Journal of Physical Sciences 综合性期刊-综合性期刊
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0.00%
发文量
4
审稿时长
24 months
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