Farokhipour Ehsan, Mehrabi Mohammad, Komjani Nader, Ding Can
Department of Electrical Engineering, Iran University of Science and Technology, Tehran 1684613114, Iran.
Global Big Data Technologies Centre, University of Technology Sydney, Sydney, NSW 2007, Australia.
Sensors (Basel). 2020 Dec 19;20(24):7311. doi: 10.3390/s20247311.
This paper presents a novel single-layer dual band-rejection-filter based on Spoof Surface Plasmon Polaritons (SSPPs). The filter consists of an SSPP-based transmission line, as well as six coupled circular ring resonators (CCRRs) etched among ground planes of the center corrugated strip. These resonators are excited by electric-field of the SSPP structure. The added ground on both sides of the strip yields tighter electromagnetic fields and improves the filter performance at lower frequencies. By removing flaring ground in comparison to prevalent SSPP-based constructions, the total size of the filter is significantly decreased, and mode conversion efficiency at the transition from co-planar waveguide (CPW) to the SSPP line is increased. The proposed filter possesses tunable rejection bandwidth, wide stop bands, and a variety of different parameters to adjust the forbidden bands and the filter's cut-off frequency. To demonstrate the filter tunability, the effect of different elements like number (), width (WR), radius (RR) of CCRRs, and their distance to the SSPP line (yR) are surveyed. Two forbidden bands, located in the X and K bands, are 8.6-11.2 GHz and 20-21.8 GHz. As the proof-of-concept, the proposed filter was fabricated, and a good agreement between the simulation and experiment results was achieved.
本文提出了一种基于类表面等离子体激元(SSPPs)的新型单层双带阻滤波器。该滤波器由一条基于SSPP的传输线以及蚀刻在中心波纹带接地平面之间的六个耦合圆环谐振器(CCRRs)组成。这些谐振器由SSPP结构的电场激发。在带状线两侧添加接地层可产生更紧密的电磁场,并在较低频率下提高滤波器性能。与基于SSPP的常见结构相比,去除了喇叭形接地,滤波器的整体尺寸显著减小,并且从共面波导(CPW)到SSPP线的过渡处的模式转换效率提高。所提出的滤波器具有可调的阻带带宽、宽阻带以及多种不同参数来调整禁带和滤波器的截止频率。为了展示滤波器的可调性,研究了不同元件的影响,如CCRRs的数量()、宽度(WR)、半径(RR)以及它们到SSPP线的距离(yR)。位于X波段和K波段的两个禁带分别为8.6 - 11.2 GHz和20 - 21.8 GHz。作为概念验证,制作了所提出的滤波器,并且模拟结果与实验结果取得了良好的一致性。