高通量二维扫描认知无线电毫米波相控阵天线

A. Guntupalli, K. Wu
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引用次数: 3

摘要

本研究提出了两种同时获得方向图和极化敏捷度的新技术。设计了35 GHz双线性极化(DLP)天线阵列,测量了各极化增益为18 dBi,两极化状态间的交叉极化电平为20 dB。设计了60 GHz双圆极化(Dual circular polarization, DCP)天线阵列,每个DCP状态的增益为13 dBc,交叉极化电平为15 dB。采用基于Butler矩阵的模拟移相器驱动各偏振态。所设计的DLP和DCP相控阵系统能够在二维扫描空间中形成波束。这些具有极化敏捷性的毫米波相控阵系统将满足当今认知无线电前端的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Millimeter-wave phased array antenna for high throughput two-dimensional scan cognitive radio
This research presents two novel techniques for obtaining the pattern and polarization agilities simultaneously. 35 GHz dual linearly polarized (DLP) antenna array is designed and the gain for each polarization is measured to be 18 dBi with a cross-polarization level of 20 dB between the two polarization states. 60 GHz Dual circularly polarized (DCP) antenna array is designed and the gain for each CP state is obtained as 13 dBc with a cross polarization level of 15 dB. Analog phase shifter based on the Butler matrix is used to drive each state of polarization. The designed DLP and DCP phased array systems are able to form beams in two dimensional (2-D) scan space. These millimeter-wave phased array systems with polarization agility will satisfy today's cognitive radio front-end requirements.
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