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A Miniaturized Reflectarray Antenna for Scanned Beam Applications

机译:用于扫描波束应用的小型化Reflectarray天线

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In this study, we propose a novel design method to significantly reduce the volume of reflectarray antennas. Unlike the commonly used approaches, the distance () between a source antenna and a reflectarray is largely narrowed in this work, which is no longer than . Accordingly, the total area occupied by the reflectarray can also be reduced with almost no decline in performance. Instead of a directional antenna, a simple omnidirectional dipole antenna is used as a feeding source, which has traditionally been expected to lower aperture efficiency of the proposed antenna. To solve this problem, an additional condition to maximize antenna gain in a target direction is suggested, which applies to both waves reflected from the reflectarray and radiated directly from the source. Moreover, by assuming that an incident plane wave coming from a far-field region, ambiguity in the polarization and incidence angle of the incident field impinging onto the reflectarray can clearly be removed. As a result, a relatively high aperture efficiency and antenna gain can be maintained in spite of the extremely reduced volume that is more than 700 times electrically smaller than the conventional ones. Good agreement between the experiment and the prediction confirms the validity of our approach.
机译:在这项研究中,我们提出了一种新颖的设计方法来显着减少反射阵列天线的体积。与通常使用的方法不同,在这项工作中,源天线和反射阵列之间的距离()大大缩小了,最长不超过。因此,反射阵列所占的总面积也可以减小而性能几乎没有下降。代替定向天线,使用简单的全向偶极天线作为馈电源,传统上已期望该天线降低所提出天线的孔径效率。为解决此问题,建议了一个附加条件,以使目标方向上的天线增益最大化,这适用于从反射阵列反射并直接从源辐射的波。此外,通过假设来自远场区域的入射平面波,可以清楚地消除入射到反射阵列上的入射场的偏振和入射角的歧义。结果,尽管体积大大减小,尽管电体积比传统的体积小700倍以上,但仍可以保持较高的孔径效率和天线增益。实验与预测之间的良好一致性证实了我们方法的有效性。

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