On the Design of Reconfigurable Wideband Ridge Gap Waveguide Amplifier Modules

Mahmoud Elsaadany, S. Shams, M. Ali, A. Sebak, G. Gagnon, D. Fawzy, A. Allam
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引用次数: 3

Abstract

The near-to-launch 5G standard for wireless communications did not seal the ultimate use the mm-wave bands. As a result, the future 6G standard is expected to proceed in more efficient utilization of these bands. One of the most critical elements in the RF link is the amplifier, especially when the attenuation of the channel is relatively high which is the case for the mm-wave bands. In this work, a reconfigurable design of a wideband amplifier is presented to operate in the band 34 GHz to 38 GHz. The line parameters are investigated to study the tune-ability of this configuration. In particular, changing the parasitic loading by varying lines width can achieve a matching level beyond 15 dB over partial band operations based on the configuration. The availability of such a reconfigurable module will pave the way for efficient 6G development.
可重构宽带脊隙波导放大器模块设计研究
即将推出的5G无线通信标准并没有确定毫米波频段的最终用途。因此,未来的6G标准预计将更有效地利用这些频段。射频链路中最关键的元件之一是放大器,特别是当信道衰减相对较高时,即毫米波频段的情况。本文提出了一种可重构的34 GHz ~ 38 GHz宽带放大器设计方案。对线路参数进行了研究,以研究该结构的可调谐性。特别是,通过改变线路宽度来改变寄生负载,可以在基于配置的部分频带操作上实现超过15 dB的匹配电平。这种可重构模块的可用性将为高效的6G开发铺平道路。
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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