Tütüncü Bilal, Kösem Mahmut
Faculty of Engineering, Department of Electrical and Electronics Engineering, Van Yüzüncü Yıl University, 65080 Van, Turkey.
Wirel Pers Commun. 2022;125(2):1523-1535. doi: 10.1007/s11277-022-09619-9. Epub 2022 Mar 6.
While copper is overwhelmingly used as the radiated part in microstrip antenna design studies, the choice of dielectric material offers a wide range of possibilities. At high frequencies, the effect of substrate permittivity on antenna performance is dramatically higher than low frequency microstrip antennas. For this purpose, in this study, a discussion on 4 different dielectric substrates to increase the overall efficiency of conventional sub-6 GHz 5G microstrip antenna is presented. A reference rectangular patch is modeled on FR4, Arlon AD300C, Rogers RO4003C and Mica substrates respectively. The radiating patch sizes are calculated and modeled for each dielectric substrate separately and then optimized for 5.65 GHz. Finally, gain and bandwidth analysis are performed with the help of CST Studio. Arlon AD300C, which is revealed to be the best in performance criteria analysis, is used for the proposed antenna fabrication and the simulated results are verified by bandwidth and gain measurements in a fully anechoic chamber. Finally, the advantages of the proposed antenna over some Sub-6 GHz 5G antennas with randomly selected substrates are confirmed by a comparative table.
虽然在微带天线设计研究中,铜被大量用作辐射部件,但介电材料的选择提供了广泛的可能性。在高频下,基板介电常数对天线性能的影响比低频微带天线显著更高。为此,在本研究中,对4种不同的介电基板进行了讨论,以提高传统6GHz以下5G微带天线的整体效率。分别在FR4、Arlon AD300C、Rogers RO4003C和云母基板上对一个参考矩形贴片进行建模。针对每种介电基板分别计算并建模辐射贴片尺寸,然后针对5.65GHz进行优化。最后,借助CST Studio进行增益和带宽分析。在性能标准分析中表现最佳的Arlon AD300C被用于制作所提出的天线,并通过在全电波暗室中的带宽和增益测量来验证模拟结果。最后,通过一个对比表证实了所提出的天线相对于一些随机选择基板的6GHz以下5G天线的优势。