An integrated configuration of antennas and filters for front-end module in massive-MIMO transmitter

Yasunori Suzuki, K. Satoh, M. Sumi, A. Fukuda, S. Narahashi
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引用次数: 5

Abstract

This paper presents an integrated configuration of patch antennas and low-profile filters for a front-end module in a Massive-MIMO transmitter on 5G era. It is very important for the Massive-MIMO transmitter to build thin and light-weight equipment from the viewpoint of easy installation. However, in general, conventional filters used in base station transmitters are large and heavy-weight, which prevents the Massive-MIMO transmitter from achieving its compact-sized configuration. This paper employs a substrate integrated waveguide (SIW) filter which can provide thin structure combined with antennas using the same substrate material. This paper evaluates the proposed configuration by computer simulation including SIW filters and patch antennas in order to reveal the directivity degradation by the SIW filters. There is almost no degradation with regard to the directivity of the proposed configuration as an array antenna. These investigation results show a key-way to configure the Massive-MIMO transmitter that can offer advantages in low-profile and light-weight.
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大规模mimo发射机前端模块天线和滤波器的集成配置
本文提出了5G时代大规模mimo发射机前端模块贴片天线和低轮廓滤波器的集成配置方案。从便于安装的角度出发,对大规模mimo发射机来说,实现设备的轻薄化是非常重要的。然而,一般来说,用于基站发射机的传统滤波器都是大而重的,这阻碍了大规模mimo发射机实现其紧凑尺寸的配置。本文采用了一种基片集成波导(SIW)滤波器,它可以提供与使用相同基片材料的天线组合的薄结构。为了揭示SIW滤波器对指向性的影响,本文通过对SIW滤波器和贴片天线的计算机仿真对所提出的配置进行了评价。作为阵列天线,所提出的结构的指向性几乎没有退化。这些研究结果为大规模mimo发射机提供了一种配置的关键方法,可以提供低姿态和轻量化的优势。
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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