Slot-loaded Dual-Band Microstrip Patch Antenna for 5G and WLAN/WiMAX Wireless Applications

Ritisha V Bhatt, G. D. Makwana
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Abstract

Objectives: This study introduces a dual-band rectangular microstrip patch antenna with a slot-loaded, specifically designed for 5G and WLAN/WiMAX applications. Method: The antenna is mounted on a substrate material of Rogers AD255C material having εr of 2.55 and a thickness of 1.56 mm. Three slots are etched on the conventional rectangular microstrip patch antenna. A 50-ohm microstrip line powers the antenna. The antenna that has been suggested is created and simulated using CST Studio Suite 2020. Findings: Based on numerical simulation, the proposed antenna functions at 3.5 GHz and 5.8 GHz, suitable for 5G and WLAN/WiMAX wireless technologies. The antenna offers measured return loss (S11) of -22.10 dB and -22.9 dB and a Gain of 4.43 dBi and 4.62 dBi at 3.5 GHz and 5.8 GHz, respectively. The radiation patterns are linear and broadside. Novelty: This article aims to create a smaller planer dual-band antenna that integrates WLAN/WiMAX and 5G communication standards into a single device. Keywords: Dual-band, 5G, WLAN, WiMAX, Microstrip patch antenna
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用于 5G 和 WLAN/WiMAX 无线应用的槽载双频微带贴片天线
研究目的本研究介绍了一种专门为 5G 和 WLAN/WiMAX 应用设计的带槽双频矩形微带贴片天线。研究方法:天线安装在εr 为 2.55、厚度为 1.56 毫米的罗杰斯 AD255C 材料基板上。在传统矩形微带贴片天线上蚀刻了三个槽。一根 50 欧姆的微带线为天线供电。使用 CST Studio Suite 2020 创建并模拟了所建议的天线。结果:根据数值仿真,建议的天线在 3.5 GHz 和 5.8 GHz 频率下工作,适用于 5G 和 WLAN/WiMAX 无线技术。天线在 3.5 GHz 和 5.8 GHz 的测量回波损耗 (S11) 分别为 -22.10 dB 和 -22.9 dB,增益分别为 4.43 dBi 和 4.62 dBi。辐射模式是线性和宽边的。新颖性:本文旨在创建一种更小的平面双频天线,将 WLAN/WiMAX 和 5G 通信标准集成到单个设备中。关键词双频 5G WLAN WiMAX 微带贴片天线
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