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Gain Enhancement of a Multiband Resonator Using Defected Ground Surface on Epoxy Woven Glass Material

机译:在环氧树脂编织玻璃材料上使用变形的地面来增强多频带谐振器的增益

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摘要

A multiband microstrip resonator is proposed in this study which is realized through a rectangular radiator with embedded symmetrical rectangular slots in it and a defected ground surface. The study is presented with detailed parametric analyses to understand the effect of various design parameters. The design and analyses are performed using the FIT based full-wave electromagnetic simulator CST microwave studio suite. With selected parameter values, the resonator showed a peak gain of 5.85 dBi at 5.2 GHz, 6.2 dBi at 8.3 GHz, 3.9 dBi at 9.5 GHz, 5.9 dBi at 12.2 GHz, and 4.7 dBi at 14.6 GHz. Meanwhile, the main lobe magnitude and the 3 dB angular beam width are 6.2 dBi and 86°, 5.9 dBi and 53.7°, 8.5 dBi and 43.9°, 8.6 dBi and 42.1°, and 4.7 dBi and 30.1°, respectively, at the resonant frequencies. The overall resonator has a compact dimension of 0.52λ  × 0.52λ  × 0.027λ at the lower resonant frequency. For practical validation, a lab prototype was built on a 1.6 mm thick epoxide woven glass fabric dielectric material which is measured using a vector network analyzer and within an anechoic chamber. The comparison between the simulated and measured results showed a very good understanding, which implies the practical suitability of the proposed multiband resonator design.
机译:在这项研究中提出了一种多频带微带谐振器,该谐振器是通过一个矩形辐射器实现的,该辐射器中嵌入了对称的矩形缝隙,并且表面存在缺陷。为研究提供详细的参数分析,以了解各种设计参数的影响。使用基于FIT的全波电磁模拟器CST微波工作室套件进行设计和分析。选择参数值后,谐振器的峰值增益在5.2,GHz时为5.85 dBi,在8.3 GHz时为6.2 dBi,在9.5 GHz时为3.9 dBi,在12.2 GHz时为5.9 dBi,在14.6 GHz时为4.7 dBi。同时,在谐振时,主瓣幅值和3 dB角波束宽度分别为6.2 dBi和86°,5.9 dBi和53.7°,8.5 dBi和43.9°,8.6 dBi和42.1°,以及4.7 dBi和30.1°。频率。整个谐振器在较低的谐振频率下具有0.52λ×0.52λ×0.027λ的紧凑尺寸。为了进行实际验证,实验室原型建立在1.6毫米厚的环氧机织玻璃纤维介电材料上,该介电材料是使用矢量网络分析仪在消声室内进行测量的。仿真结果与测量结果之间的比较显示出很好的理解,这暗示了所提出的多频带谐振器设计的实际适用性。

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