Scalable modular massive MIMO antenna of rectangular truncated corner patch antenna and circular slotted X patch antenna for 5G antenna communication

Salwa Salsabila, Rina Pudjiastuti, Levy Olivia Nur, H. H. Ryanu, Bambang Setia Nugroho
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Abstract

Massive MIMO Antenna Design results in a very large antenna size that hinders the design process. The arrangement of Massive MIMO Antennas which consists of many antenna elements is a challenge in the design process due to the limited capability of the simulation software and the complicated process. Thus, a scalability technique is used to predict the specification results produced by a Massive MIMO Antenna array with a certain configuration based on a simple MIMO Antenna array with a 2x2, 4x4, 8x8, 16x16 MIMO element configuration scheme, etc. exponential increments. This research will discuss the scaling process to predict the specifications of a Massive MIMO Antenna array. The designed MIMO antenna arrangement is based on the design of a rectangular antenna with a truncated corner and a circular antenna with an X slot for further design with various types of configurations that work at a frequency of 3.5 GHz.
用于 5G 天线通信的矩形截角贴片天线和圆形开槽 X 贴片天线的可扩展模块化大规模 MIMO 天线
大规模多输入多输出天线设计导致天线尺寸非常大,从而阻碍了设计过程。由于仿真软件的能力有限且过程复杂,由许多天线元件组成的 Massive MIMO 天线的排列是设计过程中的一项挑战。因此,在简单 MIMO 天线阵列的基础上,采用 2x2、4x4、8x8、16x16 MIMO 元件配置方案等指数级增量,使用可扩展性技术来预测具有特定配置的 Massive MIMO 天线阵列产生的规格结果。本研究将讨论预测大规模 MIMO 天线阵列规格的缩放过程。所设计的多输入多输出天线阵列以带截角的矩形天线和带 X 形槽的圆形天线为基础,进一步设计了各种类型的配置,工作频率为 3.5 GHz。
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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47
审稿时长
6 weeks
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