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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Bandwidth and Directivity Enhancement of Loop Antenna by Nonperiodic Distribution of Mu-Negative Metamaterial Unit Cells
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Bandwidth and Directivity Enhancement of Loop Antenna by Nonperiodic Distribution of Mu-Negative Metamaterial Unit Cells

机译:Mu负超材料单元格单元的非周期性分布可增强环形天线的带宽和方向性

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摘要

The theory, design, analysis, and verification of a wideband and unidirectional loop antenna loaded with mu-negative (MNG) metamaterial unit cells is presented. It is shown that by nonperiodic positioning of MNG unit cells on the loop structure, the amplitude of the surface current can be modified in a desired section of the loop, and hence, unidirectional radiation is achievable at the mu-zero resonance frequency. Moreover, it is demonstrated that as a result of the capacitive MNG loading, a 90° phase difference occurs between the vertical arms of the loop. Therefore, its radiation mechanism can be characterized as an array of two dipole antennas positioned a quarter wavelength apart, thus creating unidirectional radiation. To further improve the performance of the antennas, a quarter-wavelength strip is located in the vicinity of the loop to act as a resonator and director at higher frequencies. With the proposed structure, the final design is at least 50% smaller, in terms of the occupied area, than recent antenna designs of conventional loops, MNG loaded loops, and loop–dipole composite antennas. It also achieves a wide fractional bandwidth of 52% from 0.64 to 1.1 GHz, which is 50% wider than recent MNG metamaterial unit cell loaded loops, with a measured peak front-to-back-ratio and gain of 13 dB and 4.8 dBi, respectively.
机译:介绍了负载有mu负(MNG)超材料单元的宽带单向环形天线的理论,设计,分析和验证。示出了通过在环结构上非周期性地定位MNG单元,可以在环的期望部分中改变表面电流的幅度,因此,可以在μ零共振频率下实现单向辐射。此外,已经证明,由于电容性MNG负载,回路的垂直臂之间出现90°的相位差。因此,其辐射机制的特征可以是两个偶极子天线的阵列,它们间隔开四分之一波长,从而产生单向辐射。为了进一步提高天线的性能,四分之一波长带位于环路附近,以充当较高频率的谐振器和指向矢。采用建议的结构,就占地而言,最终设计比传统环路,MNG加载环路和环路偶极子复合天线的最新天线设计小至少50%。在0.64至1.1 GHz范围内,它还能实现52%的宽分数带宽,比最近的MNG超材料单元电池加载的环路宽50%,测得的峰值前后比和增益分别为13 dB和4.8 dBi,分别。

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