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A Novel Technique to Transform a Fractal LPF to BPF Using a Simple Combination of Defected Ground Structure (DGS) and a Narrow Gap Capacitive

机译:一种新的技术,用于使用缺陷的地面结构(DGS)简单组合与BPF转换分形LPF和窄间隙电容性

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In this paper we present a novel compact band pass microstrip filter employing metal-loaded slots etched in the ground plane (DGS) and a simple capacitive gap on the top. With the proposed technique, a simple transformation from LPF to a corresponding BPF was realized. We also presented, the equivalent circuit of the proposed BPF based on the equivalent circuit model of the DGS, which is derived from the equivalent inductance and capacitance that appeared due to the perturbed ground current in the ground plane due to the presence of the slot. The theory is validated using the commercial full-wave solver CST Microwave Studio and Microwave Office. The new BPF is very compact, and provides sharp transition bands and a wide upper stop-band and improved pass-band response symmetry. Finally, the proposed structure is implemented and the measurement results are found to be in good agreement with the simulation results.
机译:在本文中,我们提出了一种采用在接地平面(DGS)中蚀刻的金属加载槽的新型紧凑型带通过微带滤光器,以及顶部的简单电容间隙。利用所提出的技术,实现了从LPF到相应的BPF的简单转换。我们还介绍了基于DG的等效电路模型的所提出的BPF的等效电路,该DGS的等效电感和电容导致由于槽的存在由于接地平面中的扰动接地电流而出现的等效电感和电容。该理论是使用商业全波求解器CST微波工作室和微波办公室进行验证。新的BPF非常紧凑,提供急剧的过渡带和宽的上部停止带和改进的通带响应对称。最后,实施了所提出的结构,并发现测量结果与模拟结果吻合良好。

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