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A Simplified Method for Reducing Mutual Coupling Effects in Low Frequency Radio Telescope Phased Arrays

机译:减少低频射电望远镜相控阵互耦效应的简化方法

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This paper presents a new approach to reduce mutual coupling effects in large phased array antennas currently under development for use in low frequency radio astronomy. A receive mode definition of coupling between two antennas is shown to serve as a good indicator of the severity of mutual coupling interactions in a phased array. Thus, an efficient way to reduce mutual coupling in the array is to design antenna elements for low receive coupling. It is demonstrated that wire inverted-V dipole antennas can be designed with significantly reduced receive coupling over a wide range of frequencies and wave directions by proper selection of the antenna element geometry and feed impedance. Corresponding improvements in the performance of a large aperiodic phased array are achieved by using the reduced coupling wire inverted-V dipole design. Both antenna coupling and phased array analyses are performed using numerical simulation. Full-scale, in situ receive coupling measurements are performed to validate the simulation results.
机译:本文提出了一种新方法,以减少目前正在开发用于低频射电天文学的大型相控阵天线中的互耦效应。显示了两个天线之间耦合的接收模式定义,可以很好地指示相控阵中相互耦合相互作用的严重性。因此,减少阵列中的相互耦合的有效方法是设计用于低接收耦合的天线元件。事实证明,通过适当选择天线元件的几何形状和馈电阻抗,可以设计出在大范围的频率和波方向上显着降低接收耦合的线形V型偶极天线。通过使用减少的耦合线倒V偶极子设计,可以实现大型非周期性相控阵性能的相应改进。天线耦合和相控阵分析均使用数值模拟进行。进行满量程,原位接收耦合测量以验证仿真结果。

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