Design and Fabrication of a 2-Port Multiple Antenna System for mmWave Application

Q3 Engineering Journal of Communications Pub Date : 2023-11-01 DOI:10.12720/jcm.18.11.705-713
Priyadarshini K. Desai, Bindu S.
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Abstract

The next-generation wireless communication technology heading towards the mmWave band requires multiple antenna systems to achieve high diversity, high data rates, and reliability. The design of multiple antenna systems is always associated with the problem of mutual coupling between antenna elements. In order to achieve better system performance, the mutual coupling between the elements has to be minimized. This work basically aims to minimize the mutual interaction among the antenna elements. A 2-port multiple antenna system is presented, with the defected ground structure as a decoupling technique, in order to minimize the mutual coupling. The single microstrip patch antenna is initially designed to operate at 24 GHz; later, it is transformed into a 2-port multiple antenna system. The transformed 2-port multiple antenna is loaded with the defective ground structure. The designed antenna system is fabricated, and practical measurements are carried out. The isolation achieved with defective ground structure through simulation is −27dB, and the practical measured value is −40dB. The 2-port multiple antenna system performance is assessed through the following metrics: Envelope Correlation Coefficient(ECC), Diversity Gain(DG), and Channel Capacity Loss(CCL). For the proposed 2-port multiple antenna the obtained values of ECC, DG and CLL are 0.004, 9.99dB and 0.4 bit/s/Hz. The results of the simulated structure are in good agreement with the fabricated structure. The result shows that defective ground is the better technique to achieve isolation between the closely placed antennas. The defective ground structure is the simplest technique in comparison with other techniques, such as metamaterial, energy band gap etc. The major novelty of the work includes, the design of a 2-port multiple antenna system with single slot and achieving the isolation more than −47dB without affecting the antenna resonating frequency.
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毫米波应用的2端口多天线系统的设计与制造
迈向毫米波频段的下一代无线通信技术需要多天线系统来实现高分集、高数据速率和可靠性。多天线系统的设计总是与天线单元之间的相互耦合问题有关。为了获得更好的系统性能,元件之间的相互耦合必须最小化。这项工作的基本目的是尽量减少天线单元之间的相互作用。提出了一种以缺陷地结构为解耦技术的2端口多天线系统,以减少相互耦合。单微带贴片天线最初设计工作在24 GHz;后来,它被改造成一个2端口多天线系统。改造后的2端口多天线负载有缺陷的接地结构。对设计的天线系统进行了制作,并进行了实际测量。通过仿真得到的缺陷接地结构的隔离度为−27dB,实际实测值为−40dB。通过以下指标评估2端口多天线系统的性能:包络相关系数(ECC)、分集增益(DG)和信道容量损失(CCL)。对于所提出的2端口多天线,得到的ECC、DG和CLL值分别为0.004、9.99dB和0.4 bit/s/Hz。模拟结果与实际结构吻合较好。结果表明,缺陷接地是实现紧密放置的天线间隔离的较好技术。与其他技术如超材料、能带隙等相比,缺陷接地结构是最简单的技术。这项工作的主要新颖之处在于,设计了一个单插槽的2端口多天线系统,在不影响天线谐振频率的情况下实现了超过- 47dB的隔离。
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来源期刊
Journal of Communications
Journal of Communications Engineering-Electrical and Electronic Engineering
CiteScore
3.40
自引率
0.00%
发文量
29
期刊介绍: JCM is a scholarly peer-reviewed international scientific journal published monthly, focusing on theories, systems, methods, algorithms and applications in communications. It provide a high profile, leading edge forum for academic researchers, industrial professionals, engineers, consultants, managers, educators and policy makers working in the field to contribute and disseminate innovative new work on communications. All papers will be blind reviewed and accepted papers will be published monthly which is available online (open access) and in printed version.
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