Design and Performance Analysis of Defected Ground Slotted Patch Antenna for Sub-6 GHz 5G Applications

Md. Najmul Hossain, Al Amin Islam, Md. Abdur Rahim, Md. Imran Hossain, Md. Arifour Rahman
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Abstract

Recently, there have been notable advancements in wireless communication systems to address the deficiencies of fourth generation (4G) wireless technology, such as insufficient spectrum bandwidth, slow data transfer rates, and constrained network capacity. These issues may be addressed in fifth generation (5G) wireless technology, which is no longer stand-alone. This article proposes and designs a defected ground slotted patch antenna (DGSPA) for 5G (Sub-6 GHz band) applications. It can work at 3.5 GHz in the 5G N77 band, Sub-6 GHz 5G, LTE Band 42, and WiMAX. The suggested antenna has an overall dimension of 38×38×1.575 mm3 and is built on the Rogers RT5880 substrate material, whose dielectric permittivity is 2.2. The CST software is used as the simulation tool to analyze the designed antenna’s performance. The novelty of the recommended antenna is in terms of its small size with defective ground structure (DGS), high antenna gain, perfect impedance matching, and improved impedance bandwidth. The role of the DGS is evaluated by comparing the antenna’s performance with and without the DGS. It has been noticed that the DGS-backed antenna had an impedance bandwidth improvement of more than 11MHz, whereas the impedance profile is (50.086−????0.179) Ω, which denotes 50 Ω pure resistivity. It will operate within the frequency range of (3.4828 - 3.522) GHz with an impedance bandwidth of 69.2 MHz. The proposed antenna’s reflection coefficient (|????1,1|) is obtained as -54.028 dB at the resonating frequency of 3.5176 GHz, whereas the radiation gain and efficiency are observed as 6.463 dB and 93.475%, respectively. Thus, due to its promising performance based on radiation pattern, optimum efficiency, and higher bandwidth, the recommended defected ground slotted patch antenna can efficiently be used for the application of Sub-6 GHz 5G services.
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用于 6GHz 以下 5G 应用的缺陷地槽式贴片天线的设计与性能分析
最近,无线通信系统取得了显著进步,解决了第四代(4G)无线技术的不足,如频谱带宽不足、数据传输速率慢、网络容量受限等。这些问题可能会在第五代(5G)无线技术中得到解决,而第五代(5G)无线技术不再是独立的。本文提出并设计了一种适用于 5G(6GHz 以下频段)应用的缺陷接地槽式贴片天线(DGSPA)。它可在 5G N77 频段的 3.5 GHz、5G Sub-6 GHz、LTE 频段 42 和 WiMAX 上工作。建议的天线总尺寸为 38×38×1.575 mm3,采用罗杰斯 RT5880 衬底材料,其介电常数为 2.2。CST 软件是分析所设计天线性能的仿真工具。所推荐的天线的新颖之处在于它的小尺寸、缺陷接地结构(DGS)、高增益、完美的阻抗匹配和改进的阻抗带宽。通过比较有无 DGS 的天线性能,对 DGS 的作用进行了评估。结果发现,有 DGS 支持的天线阻抗带宽提高了 11MHz 以上,而阻抗曲线为 (50.086-????0.179) Ω,表示 50 Ω 纯电阻率。它将在 (3.4828 - 3.522) GHz 的频率范围内工作,阻抗带宽为 69.2 MHz。在谐振频率 3.5176 GHz 时,拟议天线的反射系数 (|????1,1|) 为 -54.028 dB,而辐射增益和效率分别为 6.463 dB 和 93.475%。因此,由于其在辐射模式、最佳效率和更高带宽方面的良好性能,推荐的缺陷地槽式贴片天线可有效地应用于 6 GHz 以下的 5G 服务。
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