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Tropospheric scintillation prediction models for a high elevation angle based on measured data from a tropical region

机译:基于热带地区实测数据的高仰角对流层闪烁预测模型

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摘要

The recent rapid evolution of new satellite services, including VSAT for internet access, LAN interconnection and multimedia applications, has triggered an increasing demand for bandwidth usage by satellite communications. However, these systems are susceptible to propagation effects that become significant as the frequency increases. Scintillation is the rapid signal fluctuation of the amplitude and phase of a radio wave, which is significant in tropical climates. This paper presents the analysis of the tropospheric scintillation data for satellite to Earth links at the Ku-band. Twelve months of data (January-December 2011) were collected and analyzed to evaluate the effect of tropospheric scintillation. Statistics were then further analyzed to inspect the seasonal, worst-month, diurnal and rain-induced scintillation effects. By employing the measured scintillation data, a modification of the Karasawa model for scintillation fades and enhancements is proposed based on data measured in Malaysia.
机译:新卫星服务的最新快速发展,包括用于互联网访问,局域网互连和多媒体应用的VSAT,引发了对卫星通信带宽使用需求的增长。但是,这些系统易受传播效应的影响,传播效应会随着频率的增加而变得越来越重要。闪烁是无线电波幅度和相位的信号快速波动,这在热带气候中尤为明显。本文介绍了对Ku波段卫星到地球链路的对流层闪烁数据的分析。收集并分析了12个月的数据(2011年1月至12月),以评估对流层闪烁的影响。然后对统计数据进行进一步分析,以检查季节性,最差月份,昼夜和雨水引起的闪烁效应。通过使用测得的闪烁数据,基于马来西亚测得的数据,提出了卡拉萨瓦模型对闪烁衰落和增强的修改。

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