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Miniaturized half-mode substrate integrated waveguide diplexer based on SIR-CSRR unit-cell

机译:基于SIR-CSRR单位单元的小型化半模式衬底集成波导双工器

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摘要

A miniaturized diplexer based on half-mode substrate integrated waveguide (HMSIW) technology by loading a novel metamaterial unit-cell is proposed. The stepped-impedance resonator (SIR) technique has been used in order to miniaturize the physical size of the conventional complementary split ring resonators (CSRRs). The proposed metamaterial unit-cell, which is called SIR-CSRR, consists of two modified rings which the stepped-impedance slot lines are utilized instead of the conventional slot lines in the CSRRs. The proposed diplexer has been designed by cascading two bandpass filters with different center frequencies. The HMSIW bandpass filters are implemented by etching two SIR-CSRR unit-cells with different sizes. The design procedure is based on the theory of evanescent mode propagation which the SIR-CSRR unit-cells behave as an electric dipoles. A forward-wave passband below the intrinsic cutoff frequency of the HMSIW structure has been achieved by loading the SIR-CSRR unit-cells on the metal surface of the HMSIW structure. This proposed diplexer represent high selectivity and compact size by using of the sub-wavelength resonators. The designed diplexer has been fabricated and experimental verification have been provided. The measured results are in a good agreement with the simulated ones. The total size of the proposed diplexer is about 0.27 lambda(g) x 0.11 lambda(g). The proposed diplexer show significant advantages in terms of size reduction, low loss, high selectivity, high Q-factor, easy bandpass frequency shifting, easy fabrication and, easy integration with other planar microwave circuits.
机译:提出了一种基于半模式衬底集成波导(HMSIW)技术通过装载新的超材料单元单元的小型化双工器。已经使用了阶梯式阻抗谐振器(SIR)技术,以使传统互补分裂环谐振器(CSRRS)的物理尺寸小型化。所提出的超级材料单元 - 单元,称为SIR-CSRR,由两个修改的环组成,利用阶梯阻抗槽线代替CSRRS中的传统插槽线。通过级联具有不同中心频率的两个带通滤波器来设计所提出的双工器。通过以不同尺寸蚀刻两个SIR-CSRR单元电池来实现HMSIW带通滤波器。设计过程基于SIR-CSRR单元 - 细胞表现为电偶极子的渐逝模式传播的理论。通过在HMSIW结构的金属表面上加载SIR-CSRR单元电池来实现低于HMSIW结构的固有截止频率的正向波通带。该提出的双工器通过使用子波长谐振器代表高选择性和紧凑的尺寸。已经制造了设计的双工器,并提供了实验验证。测量结果与模拟的结果良好。所提出的双工器的总尺寸约为0.27λ(g)×0.11λ(g)。在尺寸减小,低损耗,高选择性,高Q系数方面,该双工器显示出显着的优势,轻松的带通频率换档,易于制造,以及与其他平面微波电路轻松集成。

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