Multiband millimeter wave antenna array for 5G communication

Prithu Roy, R. Vishwakarma, Akshay Jain, Rashmi Singh
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引用次数: 24

Abstract

This paper presents a simulated design of millimeter wave square patch antenna 1×6 array on silicon and Roger RO4003 substrate for prominent multiple bands i.e. 58GHz-60GHz, 65GHz-68GHz, 72GHz-77GHz. Designed antenna can serve 5G cellular network as well as advance device-to-device (D2D) network which is special feature of 5G communication system to reduce end-to-end latency and to implement Mission Critical Push-To-Talk Communication (MCPTT) and Vehicle-to-Anything (V2X) Communication. Designed antenna has peakgain of 9 dB and very high efficiency. Return loss for given bands at their resonant frequencies are as low as -35dB and total bandwidth of 9.57 GHz. Silicon is used under feeding network to enhance the bandwidth and reduce the size of feeding network and low dielectric material under patch to reduce dielectric loss thus maintaining the efficiency. Symmetrical parallel feeding network is used to enhance gain. Inset fed with quarter wave transformers are used for feeding and matching, along with maintaining the conformity. A novel design is used to kill the spurious radiation due to feed network, thus shaping the radiation pattern for cellular application. Overall size of antenna is 6.7mm×30mm×1.2mm compatible with miniaturized devices and is printable.
5G通信用多波段毫米波天线阵列
本文针对58GHz-60GHz、65GHz-68GHz、72GHz-77GHz等多个频段,提出了一种基于硅基RO4003衬底的毫米波方阵贴片天线1×6阵列的仿真设计。设计的天线可以服务于5G蜂窝网络以及先进的设备对设备(D2D)网络,这是5G通信系统的特殊功能,可以减少端到端延迟,实现关键任务一键通通信(MCPTT)和车对任何(V2X)通信。设计的天线峰值增益为9db,效率非常高。给定频段谐振频率的回波损耗低至-35dB,总带宽为9.57 GHz。在馈电网络下使用硅来提高带宽,减小馈电网络的尺寸,在补片下使用低介电材料来降低介电损耗,从而保持效率。采用对称并联馈电网络提高增益。采用四分之一波变压器插入馈电进行馈电和匹配,并保持一致性。采用一种新颖的设计来抑制馈电网络产生的杂散辐射,从而形成适合蜂窝应用的辐射方向图。天线的总体尺寸6.7mm×30mm×1.2mm与小型化设备兼容,并且是可打印的。
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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