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首页> 外文期刊>International journal of antennas and propagation >Application of Synthetic Storm Technique for Diurnal and Seasonal Variation of Slant Path Ka-Band Rain Attenuation Time Series over a Subtropical Location in South Africa
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Application of Synthetic Storm Technique for Diurnal and Seasonal Variation of Slant Path Ka-Band Rain Attenuation Time Series over a Subtropical Location in South Africa

机译:合成风暴技术在南非亚热带地区斜径Ka波段雨衰时间序列日变化和季节变化中的应用

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As technology advances and more demands are on satellite services, rain-induced attenuation still creates one of the most damaging effects of the atmosphere on the quality of radio communication signals, especially those operating above 10 GHz. System designers therefore require statistical information on rain-induced attenuation over the coverage area in order to determine the appropriate transmitter and receiver characteristics to be adopted. This paper presents results on the time-varying rain characterization and diurnal variation of slant path rain attenuation in the Ka-band frequency simulated with synthetic storm techniques over a subtropical location in South Africa using 10-year rain rate time-series data. The analysis is based on the CDF of one-minute rain rate; time-series seasonal variation of rain rate observed over four time intervals: 00:00–06:00, 06:00–12:00, 12:00–18:00, and 18:00–24:00; diurnal fades margin; and diurnal variation of rain attenuation. Comparison was also made between the synthesized values and measured attenuation data. The predicted statistics are in good agreement with those obtained from the propagation beacon measurement in the area. The overall results will be needed for an acceptable planning that can effectively reduce the fade margin to a very low value for an optimum data communication over this area.
机译:随着技术的进步以及对卫星服务的更多需求,雨水引起的衰减仍然是大气对无线电通信信号质量(尤其是在10 GHz以上工作的无线电通信信号)的质量造成的最具破坏性的影响之一。因此,系统设计人员需要有关覆盖范围内降雨引起的衰减的统计信息,以便确定要采用的适当的发射器和接收器特性。本文利用10年降雨率时间序列数据,通过合成风暴技术对南非亚热带地区的Ka波段频率中的时变降雨特征和斜径降雨衰减的日变化进行了研究。该分析基于一分钟降雨率的CDF。在四个时间间隔内观察到的降雨率的时间序列季节性变化:00:00–06:00、06:00–12:00、12:00–18:00和18:00–24:00;日变化幅度和降雨衰减的日变化。还对合成值和测得的衰减数据进行了比较。预测的统计数据与从该地区的传播信标测量获得的统计数据非常一致。总体规划需要一个总体结果,该规划可以有效地将衰落余量降低到非常低的值,从而在该区域实现最佳数据通信。

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