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Bistatic Scattering due to Hydrometeors on Cochannel Intersystem Communication Links over a Subtropical Path

机译:由于亚热带路径上同信道系统间通信链路上的水汽分子造成的双基地散射

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摘要

The performance of fixed satellite systems in the shared frequency band depends on the tolerance level of interference between them. Interference disturbs the functionality of the ground station and causes signal degradation. The knowledge of interference level must therefore be known for an optimal satellite design. In this work, we evaluate interference due to hydrometeors for a situation in which a satellite downlink signal is affected by the signal from a terrestrial microwave network operating at the same frequency as the satellite system in a subtropical station: Durban, South Africa. The evaluation of the transmission loss is based on the modified 3D bistatic radar equation and the exponential rain cell model for the scattering. The results of intersystem interference for different station separation over frequencies variation, terrestrial antenna gains, and exceedance probabilities are presented. The effect of the additional rain attenuation (A(omega)) on the satellite signals is also examined. The results point out to some remarkable attenuation differences between the effective transmission loss and the transmission loss statistics for small time unavailability at the frequencies considered in this work. This could be detrimental in link budget design if overlooked.
机译:固定卫星系统在共享频带中的性能取决于它们之间干扰的容忍度。干扰会干扰地面站的功能,并导致信号降级。因此,对于最佳的卫星设计,必须知道干扰电平的知识。在这项工作中,我们评估了在卫星下行链路信号受到地面微波网络信号的影响的情况下,水星流星造成的干扰,该地面微波网络的运行频率与副热带站(南非德班)的卫星系统的频率相同。传输损耗的评估基于改进的3D双基地雷达方程和用于散射的指数雨单元模型。给出了在频率变化,地面天线增益和超标概率的情况下,不同电台间隔的系统间干扰的结果。还检查了额外的降雨衰减(A(ω))对卫星信号的影响。结果指出,在此工作中考虑的频率下,有效传输损耗与传输损耗统计量之间存在一些显着的衰减差异,这是因为对于较小的时间不可用而言,传输损耗统计量有所不同。如果忽略这一点,可能会对链路预算设计造成不利影响。

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  • 来源
    《International journal of antennas and propagation》 |2014年第5期|150761.1-150761.8|共8页
  • 作者

    Owolawi P. A.; Wallingo T.;

  • 作者单位

    Univ KwaZulu Natal, Dept Elect Elect & Comp Engn, ZA-4000 Durban, South Africa.;

    Univ KwaZulu Natal, Dept Elect Elect & Comp Engn, ZA-4000 Durban, South Africa.;

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