Mutual Coupling Reduction in a Switched Beamforming Multilayer Antenna Array System

IF 0.9 4区 工程技术 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS International Journal of RF and Microwave Computer-Aided Engineering Pub Date : 2024-06-30 DOI:10.1155/2024/3615181
Emna Jebabli, Mohamed Hayouni, Fethi Choubani
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Abstract

In this paper, we present a millimeter-wave beamforming antenna array for the fifth generation (5G) of mobile networks and beyond. One of our priority objectives was to minimize the antenna array’s total physical size, by paying attention to avoid radiation performance degradation, such as bandwidth and efficiency. Another priority objective was to avoid mutual coupling (MC) between radiation elements and enhance the gain of the antenna to meet the requirements and challenges of the 5G. In these prospects, we have designed a 4 × 3 Chebyshev modified rectangular antenna array, engraved on the dielectric substrate of the top layer. The antenna array is powered across a 4 × 4 Butler matrix, engraved on the dielectric substrate of the bottom layer. The prototype overall size is 35.76 × 45.56 × 1.589 mm3. Hence, four switched main lobes pointed according to the angles -14°, +26°, -23° and +12°. The corresponded maximum gains at 28 GHz are 11.1, 10.5, 11, and 11.5 dB, respectively. Moreover, a reduction of the MC is ensured by using a CSRR metamaterial carved into the ground plane (GP) of the upper dielectric substrate layer. Experimental and simulation results concord well and show a multiband behavior at 26 GHz and in Ka-band. The impedance bandwidths are 1.5%, 2.7%, and 2.43% at 26, 28, and 40 GHz, respectively. A low MC, between the antenna array’s elements, is also achieved, and the levels of the transmission coefficients vary between -11 dB and -68 dB.

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减少切换式波束成形多层天线阵列系统中的相互耦合
本文介绍了一种毫米波波束成形天线阵列,适用于第五代(5G)及以后的移动网络。我们的首要目标之一是尽量减小天线阵列的总物理尺寸,同时注意避免辐射性能下降,如带宽和效率。另一个优先目标是避免辐射元件之间的相互耦合(MC),并提高天线的增益,以满足 5G 的要求和挑战。针对这些前景,我们设计了一个 4 × 3 切比雪夫修正矩形天线阵列,刻在顶层的介质基板上。天线阵列通过刻在底层电介质基板上的 4 × 4 巴特勒矩阵供电。原型的总尺寸为 35.76 × 45.56 × 1.589 mm3。因此,四个切换式主裂片的指向角度分别为 -14°、+26°、-23° 和 +12°。在 28 GHz 时,相应的最大增益分别为 11.1、10.5、11 和 11.5 dB。此外,通过在上层介质衬底层的地平面(GP)上雕刻 CSRR 超材料,确保了 MC 的减小。实验和模拟结果非常吻合,并显示出在 26 GHz 和 Ka 波段的多频带特性。阻抗带宽在 26、28 和 40 GHz 分别为 1.5%、2.7% 和 2.43%。天线阵列元件之间的 MC 值也很低,传输系数介于 -11 dB 和 -68 dB 之间。
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来源期刊
CiteScore
4.00
自引率
23.50%
发文量
489
审稿时长
3 months
期刊介绍: International Journal of RF and Microwave Computer-Aided Engineering provides a common forum for the dissemination of research and development results in the areas of computer-aided design and engineering of RF, microwave, and millimeter-wave components, circuits, subsystems, and antennas. The journal is intended to be a single source of valuable information for all engineers and technicians, RF/microwave/mm-wave CAD tool vendors, researchers in industry, government and academia, professors and students, and systems engineers involved in RF/microwave/mm-wave technology. Multidisciplinary in scope, the journal publishes peer-reviewed articles and short papers on topics that include, but are not limited to. . . -Computer-Aided Modeling -Computer-Aided Analysis -Computer-Aided Optimization -Software and Manufacturing Techniques -Computer-Aided Measurements -Measurements Interfaced with CAD Systems In addition, the scope of the journal includes features such as software reviews, RF/microwave/mm-wave CAD related news, including brief reviews of CAD papers published elsewhere and a "Letters to the Editor" section.
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