基于孔径耦合的透镜增强相控阵紧凑系统研究

Lisha Zhang, A. Abbaspour-Tamijani, G. Pan, H. Pan
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引用次数: 1

摘要

提出了一种基于孔径耦合的紧凑型透镜增强相控阵(LEPA)系统的设计与实现,该系统适用于60 GHz波段高速互联网、数据和语音信道。LEPA是一种高指向性可操纵的集成系统,不会对芯片尺寸和直流功耗造成影响。LEPA的核心由天线滤波天线(AFA)结构组成,该结构由两层15毫米厚的低损耗微波层压板和三层18微米厚的铜层组成。适当极化的入射波经输入侧顶槽接收后,通过半波带状线谐振腔,然后以正交极化从输出侧底槽辐射出去。AFA元件周围的过孔保证了两地之间没有平行板模被激发,而在阵列的反应表面上形成的任何表面波模仍然可能导致盲扫描角的出现,需要抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On aperture coupling based compact system of lens enhanced phased array
We present design and implementation of the aperture coupling based compact system of lens enhanced phased array (LEPA) for 60 GHz band high-speed internet, data and voice channels. The LEPA is a high-directivity steerable integrated system without putting penalties on the chip size and DC power consumption. The core of a LEPA is composed of the antenna-filter-antenna (AFA) structures consisting of two layers of 15 mil-thick low-loss microwave laminates and three 18um-thick copper layers. An incident wave with proper polarization is received by the top slot in the input side, passes through a half-wave stripline resonator, and then reradiates from the bottom slot on the output side with orthogonal polarization. Vias surrounding AFA elements guarantee that no parallel plate modes are excited between the two grounds, while any surface wave modes formed on the reactive surface of the array may still contribute to the occurrence of blind scan angles and need to be suppressed.
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