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Analysis of the anti-interference performance of multi-beam satellite antenna

机译:多波束卫星天线的抗干扰性能分析

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Satellite communication, especially mobile satellite communication, developed rapidly since the 1980's. The satellite communication constellation systems have been designed and implemented using UHF or C or S band with satellite in medium or low earth orbit (MEO LEO), adopting the multi-beam or point-beam antenna technologies. The interference from the covered area, especially the intended interference, destroys the normal operation of the communication satellite. In this paper, the anti-interference performance of multi-beam satellite antenna is discussed from the point of view of counter-electron. Firstly, it is need to determine the azimuth and elevation of the earth station in the overlay of the satellite multi-beam antenna depending on the geographical locations of the satellite bottom point and the earth station. The simulation is then carried out with the linear constrained minimum variance (LCMV) algorithm. The simulation result shows that when the location of the desired signal is fixed, the ing performance of the satellite multi-beam antenna can be destroyed seriously by changing the locations of the interference sources or adding the number of the interference sources. It is proved that the locations and the total number of the interference sources influence the performance of the multi-beam antenna greatly.
机译:卫星通信,特别是移动卫星通信,自1980年代以来发展迅速。卫星通信星座系统是采用UHF或C或S波段并通过多波束或点波束天线技术在中或低地球轨道(MEO LEO)中进行设计和实现的。来自覆盖区域的干扰,特别是预期的干扰,会破坏通信卫星的正常运行。本文从反电子的角度讨论了多波束卫星天线的抗干扰性能。首先,需要根据卫星底部和地球站的地理位置确定卫星多波束天线覆盖图中地球站的方位角和仰角。然后使用线性约束最小方差(LCMV)算法进行仿真。仿真结果表明,当所需信号的位置固定时,改变干扰源的位置或增加干扰源的数量会严重破坏卫星多波束天线的性能。事实证明,干扰源的位置和总数对多波束天线的性能影响很大。

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