Department of Communication Engineering, Federal University of Rio Grande do Norte, Natal, RN, Brazil.
PLoS One. 2023 Sep 1;18(9):e0290979. doi: 10.1371/journal.pone.0290979. eCollection 2023.
This work presents the development of a bandstop filter with a tunable response. Varactor diodes are used as control elements. Studies and investigations demonstrate the influence of the variable capacitance on the input admittance and on the S-parameters frequency responses of the proposed square-ring resonator geometry. The design of the square-ring resonator is based on mathematical modeling of ideal transmission lines, considering parameters of characteristic admittance and electrical length for odd and even excitation modes. Based on S-parameters in ports, an equivalent circuit model of the resonator geometry is presented. The corresponding results are compared with numerical simulations. Comparative analyses are presented in order to guide the process of optimizing the physical dimensions of the layout. A prototype with dimension 0.0272 [Formula: see text] was designed, fabricated, and tested. As a measured result, a filter with two rejection bands was obtained, the first at 0.6-1.15 GHz and the second at 1.71-2.28 GHz, with 63.0 and 29.0% tuning range, respectively. In comparison with bandstop filters from the literature, the proposed reconfigurable filter presents a larger tuning range for the first band, sufficient inband rejection levels for several applications, and reduced physical dimensions. The proposed configuration is an attractive reconfigurable filtering device for use in modern communication systems operating below 3.0 GHz.
本工作提出了一种具有可调响应的带阻滤波器的开发。变容二极管用作控制元件。研究和调查表明,可变电容对所提出的方环谐振器几何形状的输入导纳和 S 参数频率响应的影响。方环谐振器的设计基于理想传输线的数学建模,考虑了奇模和偶模激励模式的特征导纳和电长度参数。基于端口的 S 参数,提出了谐振器几何形状的等效电路模型。相应的结果与数值模拟进行了比较。为了指导优化布局物理尺寸的过程,进行了比较分析。设计、制造和测试了尺寸为 0.0272 [Formula: see text]的原型。作为测量结果,获得了具有两个阻带的滤波器,第一个阻带在 0.6-1.15 GHz,第二个阻带在 1.71-2.28 GHz,调谐范围分别为 63.0%和 29.0%。与文献中的带阻滤波器相比,所提出的可重构滤波器在第一阻带具有更大的调谐范围,对于几种应用具有足够的带内抑制水平,并且物理尺寸减小。所提出的配置是一种用于在低于 3.0 GHz 的现代通信系统中工作的有吸引力的可重构滤波器件。