Bandwidth and Gain Improvement using Artificial Magneto-dielectric Material with Split-Ring Resonator Array Configuration

Y. G. Adhiyoga, C. Apriono, E. Rahardjo
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Abstract

The characteristics of magneto-dielectric materials besides being utilized as antenna miniaturization can also be used to improve some antenna performance parameters. In this paper, the characteristics of magneto-dielectric material are realized through the Split-Ring Resonator (SRR) structure arranged in array configurations of 3×3 and 5×5. Antennas with artificial magneto-dielectric materials (AMDM) have been successfully simulated, fabricated, and measured on FR-4 substrate with permittivity of 4.6 and thickness of 1.6 mm. From the comparison results between the conventional and the proposed antenna, the bandwidth, gain, and radiation efficiency can increase up to 272.73%, 121.36%, and 191.87%, respectively. This result means that the AMDM with SRR structure which has permittivity and permeability more than unity can improve antenna performance while reducing the antenna dimensions.
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采用分环谐振器阵列结构的人工磁介电材料提高带宽和增益
磁介质材料的特性除了可以用于天线小型化之外,还可以用于改善天线的某些性能参数。本文通过以3×3和5×5为阵列配置的分环谐振器(Split-Ring Resonator, SRR)结构来实现磁介质材料的特性。在介电常数为4.6、厚度为1.6 mm的FR-4衬底上成功地模拟、制作和测量了人工磁介质材料(AMDM)天线。与传统天线相比,该天线的带宽、增益和辐射效率分别提高了272.73%、121.36%和191.87%。这意味着采用介电常数和磁导率大于1的SRR结构的AMDM可以在减小天线尺寸的同时提高天线性能。
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