Reconfigurable Inverted-F Antenna for MIMO Cellular User Equipment

Oguzhan Oezdamar, R. Weigel, A. Hagelauer, Kun Wang, V. Solomko
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Abstract

MIMO (multiple input multiple output) systems are utilized more and more in modern handheld cellular devices. Because of the limited space, the mutual coupling effect between the antennas increases significantly. In order to reduce the coupling between antennas various decoupling and matching networks are implemented. In this work, a concept for reconfigurable inverted-F antenna for MIMO RF frontends in cellular user terminals is proposed. The main component of the system is the RF switch-based IC (integrated circuit), which was manufactured in Infineon 130 nm RF switch technology. The chip reconfigures the physical length of the inverted-F antenna (IFA), making the antenna longer for low-band operation and splitting the antenna in two IFAs for middle/ high band MIMO operation. The proposed concept implements MIMO approach with 19 dB isolation between the antennas at 1.8 GHz while sustaining good efficiency at 900 MHz.
用于MIMO蜂窝用户设备的可重构倒f天线
MIMO(多输入多输出)系统在现代手持蜂窝设备中得到越来越多的应用。由于空间有限,天线间的相互耦合效应显著增加。为了减少天线间的耦合,实现了各种解耦和匹配网络。本文提出了一种用于蜂窝用户终端MIMO射频前端的可重构倒f天线的概念。该系统的主要组件是基于射频开关的IC(集成电路),采用英飞凌130纳米射频开关技术制造。该芯片重新配置了倒f天线(IFA)的物理长度,使天线在低频段工作时更长,并将天线分成两个IFA用于中/高频段MIMO操作。提出的概念实现了MIMO方法,在1.8 GHz时天线之间的隔离度为19 dB,同时在900 MHz时保持良好的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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