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Optimal Number of Elements and Element Spacing of Wide-Band Focal Plane Arrays for a New Generation Radio Telescope

机译:新一代无线电望远镜宽带焦平面阵列的最佳元素和元素间距

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The use of Focal Plane Arrays (FPA) as feeds for reflector antennas constitutes a new-generation solution for future radio telescope systems. In this paper, we investigate one of two main factors affecting the overall performance of such FPA-fed reflector systems, which is characterized by the total aperture efficiency and the bandwidth over the Field-of-View. These are strongly influenced by the properties of both the reflector geometry and the FPA feed. The parameters that define the latter are the number of elements comprising the array, and the size of each element. The goal here is to provide insights into how these array parameters affect the total aperture efficiency and bandwidth. The second factor, namely, system noise temperature is not studied in this paper and will be addressed in a different publication. In the process of our study, an optimized FPA geometry has been determined for each of several considered reflector cases. The array element that is used to perform this study is the open-ended aperture of a hard rectangular waveguide (HRW). The computed results are obtained from a computer code based on a rigorous full-wave analysis that takes the important mutual coupling within the array into account.
机译:使用焦平面阵列(FPA)作为反射器天线的馈送构成未来无线电望远镜系统的新一代解决方案。在本文中,我们研究了影响这种FPA馈电器系统的整体性能的两个主要因素之一,其特征在于,在视野上的总光圈效率和带宽的特征。这些受到反射器几何形状和FPA饲料的性质的强烈影响。定义后者的参数是包括阵列的元素数,以及每个元素的大小。这里的目标是提供有关这些阵列参数如何影响总光圈效率和带宽的洞察力。第二个因素,即本文没有研究系统噪声温度,并将在不同的出版物中解决。在我们研究的过程中,针对几种考虑的反射器壳体中的每一个已经确定了优化的FPA几何。用于执行该研究的阵列元件是硬矩形波导(HRW)的开口孔径。基于严格的全波分析,从计算机代码获得计算结果,其考虑了阵列内的重要互联耦合。

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