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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >An approach for small omnidirectional microstrip antennas based on the backward waves of double negative metamaterials
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An approach for small omnidirectional microstrip antennas based on the backward waves of double negative metamaterials

机译:基于双负超材料的后向波的小型全向微带天线方法

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In this paper, a small omnidirectional microstrip antenna (MSA) is proposed based on a compact double negative (DNG) metamaterial, which is constructed by modified split ring resonators (MSRRs) and metal strips. First, the backward wave property of the DNG slab is investigated and illustrated by full-wave simulations. It is shown that the slab can exhibit double negative parameters and support backward wave in a broadband of 8.45 GHz ~ 11.05 GHz, so the existence of the DNG band is proven. Then the DNG unit cells are stacked and embedded into a host substrate to construct a phase-compensating substrate for the small MSA. By using the modified transmission line model (MTLM) and 3D full-wave simulation, a small MSA is modeled and characterized. Results show that the presence of the DNG fillings can indeed greatly reduce the physical dimensions from 0.5λ to 0.17λ, while its farfield pattern is significantly different from that of a conventional half-wavelength MSA. Lastly, the E-field distributions of the small MSA and a conventional half-wave-length MSA are contrasted and discussed to explain the functional mechanism of the small omnidirectional SMA.
机译:本文提出了一种小型的全向微带天线(MSA),该天线基于紧凑的双负(DNG)超材料,该材料由改进的裂环谐振器(MSRR)和金属带构成。首先,通过全波模拟研究和说明了DNG平板的后向波特性。结果表明,该平板在8.45 GHz〜11.05 GHz的宽带中具有双负参数并支持反向波,因此证明了DNG频段的存在。然后,将DNG单位单元堆叠并嵌入到主机基板中,以构造用于小型MSA的相位补偿基板。通过使用修改后的传输线模型(MTLM)和3D全波仿真,可以对小型MSA进行建模和表征。结果表明,DNG填充物的存在确实可以将物理尺寸从0.5λ大大减小到0.17λ,而其远场图案与传统的半波长MSA明显不同。最后,对比和讨论了小型MSA与常规半波长MSA的电场分布,以解释小型全向SMA的功能机理。

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