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Interleaved Isophoric Sparse Arrays for the Radiation of Steerable and Switchable Beams in Satellite Communications

机译:交错等距稀疏阵列用于卫星通信中可控和可切换波束的辐射

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We address the synthesis of isophoric sparse ring arrays for full-Earth coverage from Geostationary Earth Orbit (GEO) satellites by means of steerable beams, switchable between two different widths. In particular, we pursue the desired beam zooming/shrinking through two interleaved sparse arrays deployed over the available circular aperture. To this aim, we propose two different antenna architectures. In one case, the two beams are radiated by two separate interleaved arrays; in the other case, the two beams are instead radiated by two interleaved arrays that share a common part of their layouts. Both the proposed architectures allow us to exploit a synthesis procedure that calculates the two interleaved arrays separately, through the cascade of two steps, both implemented with a (computationally) very efficient deterministic density-tapering approach. The proposed strategy allows to obtain isophoric sparse layouts, satisfying the required design constraints with a significant reduction of the control points with respect to the solution achievable exploiting noninterleaved isophoric sparse arrays.
机译:我们致力于通过可控波束在两个不同宽度之间切换的方法,解决地球静止地球轨道(GEO)卫星对全地球覆盖的同义稀疏环阵列的合成问题。特别是,我们通过部署在可用圆形光圈上的两个交错稀疏阵列来追求所需的光束缩放。为此,我们提出了两种不同的天线架构。在一种情况下,两个单独的交错阵列辐射两个光束;在另一种情况下,这两个光束由共享其布局的共同部分的两个交错阵列辐射。两种提出的体系结构都允许我们利用综合过程,通过两个步骤的级联分别计算两个交错的阵列,这两个步骤均使用(计算上)非常有效的确定性密度渐减方法来实现。所提出的策略允许获得离散的稀疏布局,从而满足所需的设计约束,并且相对于利用非交错的离散的稀疏数组可以实现的解决方案,大大减少了控制点。

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