An Active Metamaterial Antenna with Tunable Zero-order Resonances

Zhanheng Liu, Hongtao Liu, Y. Luo
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引用次数: 1

Abstract

Electromagnetic metamaterials are based on artificial design, such as composite left-right-handed structure (CRLH), split ring resonator (SRR) and Mushroom, and the periodical configurations can be taken advantages of to realize tunable properties via integrating active components such as varactor diodes into metamaterial units. In this paper, an active metamaterial antenna with tunable zero-order resonance(ZOR) is proposed with utilizing Mushroom structure to realize the narrow band. Particularly, varactor diodes are utilized in each unit cell, thus, by supplying different voltages, the capacitance of varactor diodes is changed, resulting in tunable ZORs. The measured results of the antenna are consistent with the simulated results. The proposed antenna can be used in 5G narrowband Internet of Things in the near future due to its good narrowband characteristics in Sub-6GHz band.
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具有可调谐零阶共振的有源超材料天线
电磁超材料是基于人工设计的,如复合左右手结构(CRLH)、劈裂环谐振器(SRR)和蘑菇结构,通过将变容二极管等有源元件集成到超材料单元中,可以利用周期性结构的优势实现可调谐特性。提出了一种利用蘑菇结构实现窄带可调谐零级谐振的有源超材料天线。特别是,在每个单元电池中使用变容二极管,因此,通过提供不同的电压,变容二极管的电容被改变,从而产生可调谐的zor。天线的实测结果与仿真结果吻合较好。由于该天线在Sub-6GHz频段具有良好的窄带特性,可以在不久的将来用于5G窄带物联网。
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