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首页> 外文期刊>International journal of antennas and propagation >Improved Microstrip Antenna with HIS Elements and FSS Superstrate for 2.4 GHz Band Applications
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Improved Microstrip Antenna with HIS Elements and FSS Superstrate for 2.4 GHz Band Applications

机译:具有HIS元件和FSS Superstrate的改进型微带天线,适用于2.4 GHz频段应用

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摘要

This research presents a microstrip antenna integrated with the high-impedance surface (HIS) elements and the modified frequency selective surface (FSS) superstrate for 2.4 GHz band applications. The electromagnetic band gap (EBG) structure was utilized in the fabrication of both the HIS and FSS structures. An FR-4 substrate with 120 mm × 120 mm × 0.8 mm in dimension (W × L × T) and a dielectric constant of 4.3 was used in the antenna design. In the antenna development, the HIS elemental structure was mounted onto the antenna substrate around the radiation patch to suppress the surface wave, and the modified FSS superstrate was suspended 20 mm above the radiating patch to improve the directivity. Simulations were carried out to determine the optimal dimensions of the components and the antenna prototype subsequently fabricated and tested. The simulation and measured results were agreeable. The experimental results revealed that the proposed integrated antenna (i.e., the microstrip antenna with the HIS and FSS structures) outperformed the conventional microstrip antenna with regard to reflection coefficient, the radiation pattern, gain, and radiation efficiency. Specifically, the proposed antenna could achieve the measured antenna gain of 10.14 dBi at 2.45 GHz and the reflection coefficient of less than −10 dB and was operable in the 2.39–2.51 GHz frequency range.
机译:这项研究提出了一种微带天线,集成了高阻抗表面(HIS)元件和改进的频率选择性表面(FSS)覆层,适用于2.4strateGHz频段应用。在HIS和FSS结构的制造中都利用了电磁带隙(EBG)结构。在天线设计中,使用尺寸为120 mm×120 mm×0.8 mm(W×L×T),介电常数为4.3的FR-4基板。在天线开发中,将HIS元素结构安装在辐射贴片周围的天线基板上以抑制表面波,并且将改良的FSS上层板悬挂在辐射贴片上方20 mm以提高方向性。进行了仿真,以确定组件的最佳尺寸以及随后制作和测试的天线原型。模拟和测量结果均令人满意。实验结果表明,所提出的集成天线(即具有HIS和FSS结构的微带天线)在反射系数,辐射方向图,增益和辐射效率方面均优于常规微带天线。具体来说,所提出的天线可以在2.45 GHz处实现10.14 dBi的实测天线增益,并且反射系数小于-10 dB,并且可以在2.39–2.51 GHz的频率范围内工作。

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