Multi-Frequency Broadband optimization of Spaceborne Reflectarrays for Space Applications

D. R. Prado, M. Arrebola, M. Pino, G. Goussetis
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Abstract

Direct-to-home (DTH) applications usually require a radiation pattern with a given footprint on the surface of the Earth and impose stringent cross-polarization requirements in the form of crosspolar discrimination (XPD) or crosspolar isolation in a given bandwidth. This paper describes a multi-frequency broadband optimization procedure and performance results of a very large spaceborne reflectarray for DTH application in a 10% bandwidth. The proposed design methodology is based on the generalized intersection approach and the use of a multi-resonant unit cell with multiple degrees of freedom (DoF). The procedure is divided into three stages to facilitate convergence towards a broadband performance. First, a initial narrowband design at central frequency is obtain. Then, a broadband optimization including XPD requirements is carried out with a limited number of DoF. Finally, more DoF are included in the last stage optimization to obtain a broadband reflectarray with improved cross-polarization performance.
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面向空间应用的星载反射射线多频宽带优化
直接到户(DTH)应用通常需要在地球表面具有给定足迹的辐射方向图,并在给定带宽内以交叉极化鉴别(XPD)或交叉极化隔离的形式施加严格的交叉极化要求。本文介绍了一种在10%带宽下应用于DTH的超大星载反射镜的多频宽带优化过程和性能结果。所提出的设计方法是基于广义相交法和使用多自由度的多谐振单元格。该过程分为三个阶段,以促进向宽带性能的融合。首先,在中心频率处进行了初始窄带设计。然后,在有限的DoF下进行了包含XPD要求的宽带优化。最后,在最后一级优化中加入更多的自由度,以获得具有更好交叉极化性能的宽带反射光。
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