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Design of a Spherical Conformal Phased Array Antenna Based on the Truncated Icosahedron

机译:基于截断的ICOSahedron的球面共形相控阵天线的设计

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Spherical phased array antenna is widely used in satellite communication, weather surveillance and aircraft detection thanks to its hemispherical scanning potentials. In this paper, we designed a spherical conformal phased array antenna through pentagon and hexagon sub-arrays that following the truncated icosahedron configuration. The radiator inside each sub-array was an array of dual-polarized microstrip antennas. Full polarization is thereby formed due to the superimposition of these sub-arrays with various orientations. For a targeted direction, the active sub-arrays and antennas were defined first. Then pattern synthesis simulations were conducted by convex optimization methods to obtain the excitations for desired patterns. It is demonstrated that this antenna array could achieve hemispherical coverage while reducing the fabrication cost and facilitating the pattern synthesis process.
机译:由于其半球形扫描电位,球形相控阵天线广泛用于卫星通信,天气监控和飞机检测。在本文中,我们设计了通过五角形和六边形子阵列的球形共形相控阵天线,其追随截短的ICOSAHEDRON配置。每个子阵列内的散热器是双极化微带天线的阵列。由此由于这些子阵列的叠加而形成完全偏振,因此具有各种方向。对于目标方向,首先定义有源子阵列和天线。然后通过凸优化方法进行图案合成模拟,以获得所需图案的激发。结果证明,该天线阵列可以实现半球形覆盖,同时降低制造成本并促进图案合成过程。

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