Harmonic suppression of monopole wideband antenna with DGS for operating frequency at 3.5GHz

Nisaa Yasmin Nor Izuddin, O. Ayop, F. Zubir, N. M. Nadzir
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Abstract

This paper presents the integration of a microstrip monopole antenna and defected ground structure (DGS) for harmonic suppression. The main contribution of this structure is the utilization of the widely available substrate with a simple design to improve the power quality by harmonics suppression. Since the microstrip monopole antenna already offers wideband characteristics, the DGS is incorporated in the design to achieve a stop band in the undesired frequencies while widening the rejection band. The main objective of this paper is to achieve a focused frequency bandwidth centered at 3.5 GHz frequency with no harmonics for high quality antenna for future 5G application. To achieve this, a modified rectangular patch is designed to obtain wideband frequency at 3.5 GHz. Next, a DGS structure is placed at the ground plane of the antenna to ensure the undesired frequencies are suppressed for better power quality and wideband operating frequency at 3.5 GHz. Next, a DGS structure is placed at the ground plane of the antenna to ensure the undesired frequencies are suppressed for better power quality. The proposed work is designed and simulated using CST Studio Suite 2022. The results show that by implementing the DGS on the ground plane of the proposed antenna, the frequencies ranging from 4.3 GHz up to 8 GHz are successfully suppressed. Plus, even with the addition of the DGS structure at the ground plane of the antenna, the efficiency of the antenna remains high at 91.02% and there is negligible change in the radiation pattern. However, the gain of the antenna decreased by 1.53 dB.
工作频率为3.5GHz的DGS单极宽带天线谐波抑制
提出了一种将微带单极天线与缺陷接地结构(DGS)相结合的谐波抑制方法。这种结构的主要贡献是利用了广泛可用的衬底,设计简单,通过谐波抑制来改善电能质量。由于微带单极天线已经提供了宽带特性,DGS被纳入到设计中,以在不需要的频率中实现阻带,同时扩大抑制带。本文的主要目标是为未来5G应用的高质量天线实现以3.5 GHz频率为中心的无谐波聚焦频率带宽。为了实现这一点,设计了一个改进的矩形贴片,以获得3.5 GHz的宽带频率。接下来,在天线的接地面放置一个DGS结构,以确保抑制不需要的频率,以获得更好的电能质量和3.5 GHz的宽带工作频率。接下来,在天线的接地面放置一个DGS结构,以确保抑制不需要的频率以获得更好的电能质量。建议的工作是使用CST Studio Suite 2022设计和模拟的。结果表明,通过在天线的地平面上实现DGS,可以成功抑制4.3 GHz ~ 8 GHz的频率。此外,即使在天线的地平面增加了DGS结构,天线的效率仍然很高,为91.02%,辐射方向图的变化可以忽略不计。然而,天线的增益降低了1.53 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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