FSS-based planar bandpass filter using strip slotted-lines

Eric Simbolon, A. Munir
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引用次数: 10

Abstract

In this paper, a planar bandpass filter which is developed based on frequency selective surfaces (FSS) is proposed to be designed numerically and experimentally. Two basic patterns of FSS unit cells are posed to be established by using strip slotted-line which have asymmetric and symmetric structures, namely hexapole and octapole slotted-lines. The geometry parameter of strip slotted line in each unit cell is varied to analyze its impact to the resonant frequency shift and the characteristic response. After obtaining desired performances, the final design is then built up by constructing 10 × 10 unit cells for each structure. From numerical characterization results, it shows that the structure with hexapole slotted-line unit cell has resonant frequency of 2.46GHz with S11 value of -10.76dB and S12 value of -3.92dB, while the structure with octapole slotted-line unit cell has resonant frequency of 2.38GHz with S11 and S12 values of -19.04dB and -3.17dB, respectively. In addition, a hardware realization is also investigated for experimental characterization.
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基于fss的平面带状开槽带通滤波器
本文提出了一种基于频率选择曲面(FSS)的平面带通滤波器的数值设计和实验设计。提出了采用非对称和对称结构的条形开槽线建立FSS单元格的两种基本模式,即六极和八极开槽线。通过改变各单元胞内条形槽线的几何参数,分析其对谐振频移和特性响应的影响。在获得所需的性能后,然后通过为每个结构构建10 × 10的单元格来构建最终设计。数值表征结果表明,六极槽线单元格结构的谐振频率为2.46GHz, S11值为-10.76dB, S12值为-3.92dB;八极槽线单元格结构的谐振频率为2.38GHz, S11值为-19.04dB, S12值为-3.17dB。此外,还研究了用于实验表征的硬件实现。
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