Analytical approach of permittivity and permeability of spiral-resonator shaped planar structure implemented as antenna radiator

M. Yunus, F. Zulkifli, E. Rahardjo
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引用次数: 3

Abstract

This paper presents analytical approach of permittivity and permeability of planar structure which takes a shape of spiral-resonator (SR) implemented as an antenna radiator. The use of planar structure for instance as an antenna radiator is recently required in order to have communication devices with compact and light in weight. The approach is carried out by calculating the effective impedance of SR shaped planar structure through its equivalent circuit which consists of resistance, inductance, and capacitance. Afterwards, the effective permittivity and permeability are obtained. To verify the proposed analytical approach, the SR shaped planar structure is also characterized using 3D simulation software to gain the effective permittivity and permeability. It shows that the effective permittivity and permeability which are yielded from simulation and analytical approach have good agreement each other for positive permittivity (μ > 0) and negative permeability (μ < 0) at the frequency range above 0.8 GHz.
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作为天线辐射体的螺旋谐振器形平面结构的介电常数和磁导率分析方法
提出了一种以螺旋谐振器为天线辐射体的平面结构的介电常数和磁导率的解析方法。为了使通信设备体积更小、重量更轻,最近需要使用平面结构作为天线散热器。该方法是通过SR形平面结构的等效电路计算其有效阻抗,该等效电路由电阻、电感和电容组成。然后得到有效介电常数和磁导率。为了验证所提出的分析方法,还利用三维仿真软件对SR形平面结构进行了表征,获得了有效介电常数和磁导率。结果表明,在0.8 GHz以上的频率范围内,模拟和解析得到的有效介电常数和磁导率在正介电常数(μ > 0)和负介电导率(μ < 0)上具有较好的一致性。
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