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On the Bandwidth Gap Between the Array-Feed and Cluster-Feed Regimes for Broadband Multifeed Systems

机译:宽带多馈系统的阵列馈送和集群馈送体制之间的带宽差距

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For reflector antennas with broadband multiple feed systems, under optimal beamforming conditions, the feed operates at low frequencies as a phased array feed (PAF), with multiple elements contributing to a synthesized illumination pattern, whereas at high frequencies, each element forms a single independent beam. There is a frequency range between these two regimes where it is difficult to achieve high aperture efficiency, which limits the ultimate performance of broadband multifeed systems. We show that this bandwidth gap is largely independent of the formed beam angle, number of array elements, array layout, and element radiation patterns. We use simulation and modeling to study the origin and nature of this physical effect, develop an upper bound on the sensitivity bandwidth of a high-efficiency array feed, and consider several possible methods for improving the efficiency of multifeed systems in the bandwidth gap.
机译:对于具有宽带多重馈电系统的反射器天线,在最佳波束成形条件下,馈电在低频下作为相控阵馈电(PAF)运行,其中多个元素构成了合成的照明模式,而在高频下,每个元素形成一个独立的光束。在这两种情况之间存在一个频率范围,很难实现高孔径效率,这限制了宽带多馈系统的最终性能。我们表明,该带宽间隙在很大程度上与所形成的束角,阵列元件的数量,阵列布局和元件辐射图无关。我们使用仿真和建模来研究这种物理效应的起源和性质,为高效阵列馈源的灵敏度带宽设定一个上限,并考虑在带宽缺口中提高多馈系统效率的几种可能方法。

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