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Novel Miniaturized Equal/Unequal HMSIW Filtering Power Dividers Based on the Evanescent Mode Technique

机译:基于渐逝模式技术的新型小型化相等/不等HMSIW滤波功率分频器

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In this paper, three miniaturized equal/unequal filtering power dividers (FPDs) applying the half-mode substrate integrated waveguide (HMSIW) and metamaterial concepts are offered. The operational method of the presented structures is based on the theory of evanescent mode propagation. The stepped-impedance resonator (SIR) technique has been employed to reduce the dimension of the conventional complementary split ring resonator (CSRR) unit-cell. In this technique, the slot lines in the conventional CSRR are replaced by the stepped-impedance slot lines in the improved metamaterial unit-cell which is called SIR-CSRR unit-cell. By means of the SIR-CSRR unit-cell, three equal/unequal FPDs with arbitrary power-dividing ratio have been reported. Additionally, to further size reduction of the proposed FPDs, the HMSIW platforms are used. All of the proposed HMSIW PDs are designed at 2.4 GHz which are suitable for WLAN applications. For demonstration of the applied procedures in the proposed HMSIW FPDs, the suggested equal/unequal HMSIW FPDs have been fabricated and measured. A reasonable agreement between simulated and measured results has been achieved. The entire size of the suggested equal/unequal HMSIW FPDs is about 0.11 × 0.09 λg2.
机译:本文提供了应用半模衬底集成波导(HMSIW)和超石料概念的三种小型化等/不等滤波功率分频器(FPDS)。所提出的结构的操作方法基于渐逝模式传播的理论。已经采用了阶梯式阻抗谐振器(SIR)技术来减少传统互补分裂环谐振器(CSRR)单元单元的尺寸。在该技术中,传统CSRR中的插槽线由称为SIR-CSRR单元单元的改进的超材料单元单元中的阶梯式阻抗槽线代替。通过先生-CSRR单位 - 细胞,已经报道了具有三个具有任意供电率的相等/不等FPD。另外,为了进一步尺寸减小所提出的FPD,使用HMSIW平台。所有提议的HMSIW PD都设计为2.4 GHz,适用于WLAN应用。为了演示所提出的HMSIW FPD中的应用程序,已制造和测量建议的相等/不平等HMSIW FPD。已经实现了模拟和测量结果之间的合理一致性。建议的相等/不等HMSIW FPD的整个尺寸约为0.11×0.09λg2。

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