Design of A Dual-Band Microstrip Antenna for 5G Communication

A. Firdausi, Lusi Damayanti, G. Hakim, Umaisaroh Umaisaroh, M. Alaydrus
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引用次数: 6

Abstract

The necessity for mobile communication devices is increased rapidly. Users expect to get very fast information access and data access without delay. The fifth-generation (5G) development in wireless mobile telecommunication technology promises capacity enhancement, ease connectivity, high efficiency, and high data rate transmission. The appropriate device should support this improvement of the technology. The antenna is one of the main devices to support the high data rate transmission. This paper proposed designing a dual-band rectangular patch antenna in 29 GHz and 38 GHz that supports 5G technology. This microstrip antenna is composed of 4 patch array elements to obtain higher gain. The material used for this microstrip antenna is RT Duroid 5880 with a dielectric constant of 2.2 and a thickness of 1.575 mm. Both measurement and simulation are confirmed that the 2×2 array microstrip antenna in 29 GHz and 38 GHz frequency have a return loss value of -12.5 dB and -16 dB, respectively. The bandwidth for both frequencies has a value of 4.5 GHz and 3.75 GHz.
用于5G通信的双频微带天线设计
对移动通信设备的需求迅速增加。用户期望获得非常快的信息访问和无延迟的数据访问。无线移动通信技术的第五代(5G)发展承诺容量增强,连接简便,效率高,数据传输速率高。适当的设备应该支持这项技术的改进。天线是支持高速数据传输的主要设备之一。本文提出设计一种支持5G技术的29 GHz和38 GHz双频矩形贴片天线。该微带天线由4个贴片阵列元件组成,以获得更高的增益。该微带天线的材料为RT Duroid 5880,介电常数为2.2,厚度为1.575 mm。测量和仿真均证实了2×2阵列微带天线在29 GHz和38 GHz频率下的回波损耗值分别为-12.5 dB和-16 dB。两个频率的带宽分别为4.5 GHz和3.75 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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