High gain, directive and miniaturized metamaterial C-band antenna

P. Dawar, N. S. Raghava, A. De
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引用次数: 4

Abstract

Abstract In this paper, design and analysis of U–T-shaped metamaterial antenna have been presented. It shows negative permittivity and permeability characteristics. The metamaterial array is embedded inside the substrate of rectangular microstrip patch antenna. Upon incorporation, directivity increases by 24% and gain increases by 18%. Results were compared with equivalent circuit analysis of patch antenna and are well in coherence with FEM (finite-element method)-based Ansoft HFSS (high-frequency structure simulator) simulation with around 1% error. Using fractal metamaterial antenna of first and second order iterative mathematics, antenna is miniaturized by 58 and 75% along with improvement in bandwidth.
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高增益、定向、小型化的超材料c波段天线
摘要本文对u型超材料天线进行了设计与分析。它具有负介电常数和负磁导率的特性。所述超材料阵列嵌入在矩形微带贴片天线的衬底内。合并后,指向性增加24%,增益增加18%。结果与贴片天线等效电路分析结果进行了比较,与基于有限元法的Ansoft HFSS(高频结构模拟器)仿真结果具有较好的一致性,误差在1%左右。采用一阶和二阶迭代数学分形超材料天线,天线小型化58%和75%,带宽提高。
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Cogent Physics
Cogent Physics PHYSICS, MULTIDISCIPLINARY-
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