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Antenna array for 5th generation 802.11ac Wi-Fi applications

机译:5 th 生成802.11ac Wi-Fi应用程序的天线阵列

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摘要

In this paper, the design and simulation study of a compact 8-element MIMO antenna system for next generation IEEE 802.11ac Wi-Fi application is presented. The IEEE 802.11ac is an emerging WLAN standard which operates at 5GHz band. The real challenges for IEEE 802.11ac are to meet the recent functional demands and the extensive wireless market growth expected in next 3-5 years. The aim of this research is to propose an antenna design that can operate at 5GHz WLAN band and facilitates the features that conform to 802.11ac Wi-Fi standard requirements. The proposed antenna design consists of eight radiating elements and a gap coupled inset-feed technique is incorporated to achieve better performance by the MIMO antenna array. The dimensions of the patch antenna were calculated using transmission-line model whereas layouts of the single element antenna and the array are simulated on two different platforms i.e. momentum - an EM tool of Agilent's advance design system (ADS) system simulator based on method of moments technique and CST microwave studio which is based on finite difference time domain technique. In the end, the comparative analysis of the antenna simulation results using both the techniques is presented.
机译:本文介绍了下一代IEEE 802.11ac Wi-Fi应用的紧凑型8元件MIMO天线系统的设计和仿真研究。 IEEE 802.11ac是一个在5GHz频段运行的新兴的WLAN标准。 IEEE 802.11ac的真正挑战是满足最近的功能需求和预期3 - 5年的广泛无线市场增长。本研究的目的是提出一种天线设计,可以在5GHz WLAN频带中运行,并促进符合802.11ac Wi-Fi标准要求的功能。所提出的天线设计由八个辐射元件组成,并且结合了间隙耦合插入技术,以通过MIMO天线阵列实现更好的性能。使用传输线模型计算贴片天线的尺寸,而单个元素天线的布局和阵列的布局在两个不同的平台上模拟了基于时刻方法的Agilent先进设计系统(ADS)系统模拟器的EM工具技术和CST微波工作室,基于有限差分时域技术。最后,提出了使用这两种技术的天线仿真结果的对比分析。

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