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Evaluation of the Efficiency of the Metamaterial in the Development of Microstrip patch Antennas using LTCC Technology

机译:利用LTCC技术评估微带贴片天线开发中超材料的效率

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the paper describes the results of the study and modeling of the characteristics of the metamaterial made of square open-loop ring resonators (SRR – split ring resonator), the SRR with a single ring and SR resonators based on the obtained results. Numerical results have shown that higher miniaturization is achieved using a spiral resonator SR, compared to the cases of SRR with double rings and SRR with one ring. A study in the range of 9.15 GHz to 5.25 GHz of the influence on the characteristics of the metamaterial of SR spiral resonators from the number of turns (from 1 to 5) at fixed other sizes of the resonator. It is shown that the increase in the number of turns leads to a shift of the operating frequency band towards lower frequency values, but the operating band is reduced. The paper presents the computation through the coefficients of transmission and reflection of the effective values of the dielectric εeff and magnetic permeability µeff layer of metamaterial based on the spiral resonator SR. A microstrip antenna on a substrate of SR-metamaterial is considered. It is shown that this modification of the antenna and the use of LTCC technology can decrease the geometric dimensions of the patch, increase radiation efficiency and extend the operating frequency band. Numerical studies were carried out using specialized software for electrodynamic design, such as HFSS and FEKO.
机译:本文描述了研究结果,并基于获得的结果对由方形开环环形谐振器(SRR –裂环谐振器),带单环的SRR和SR谐振器制成的超材料的特性进行了建模。数值结果表明,与带有双环的SRR和带有一个环的SRR相比,使用螺旋谐振器SR可以实现更高的小型化。在9.15 GHz到5.25 GHz范围内研究在固定其他尺寸的谐振器时,匝数(从1到5)对SR螺旋谐振器超材料特性的影响。可以看出,匝数的增加导致工作频带向较低的频率值偏移,但是工作频带减小了。本文介绍了基于螺旋谐振器SR的超材料的介电常数εeff和磁导率μeff的有效值的透射系数和反射系数的计算方法。考虑了在SR元材料衬底上的微带天线。结果表明,天线的这种修改和LTCC技术的使用可以减小贴片的几何尺寸,提高辐射效率并扩展工作频带。使用专门用于电动设计的软件进行了数值研究,例如HFSS和FEKO。

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