Mezaal Yaqeen S, Eyyuboglu Halil T, Ali Jawad K
Electronic and Communication Engineering Department, Cankaya University, Ankara, Turkey; Microwave Research Group, Electrical Engineering Department, University of Technology, Baghdad, Iraq.
Electronic and Communication Engineering Department, Cankaya University, Ankara, Turkey.
PLoS One. 2014 Dec 23;9(12):e115412. doi: 10.1371/journal.pone.0115412. eCollection 2014.
This paper presents new Wide Bandpass Filter (WBPF) and Narrow Bandstop Filter (NBSF) incorporating two microstrip resonators, each resonator is based on 2nd iteration of Hilbert fractal geometry. The type of filter as pass or reject band has been adjusted by coupling gap parameter (d) between Hilbert resonators using a substrate with a dielectric constant of 10.8 and a thickness of 1.27 mm. Numerical simulation results as well as a parametric study of d parameter on filter type and frequency responses are presented and studied. WBPF has designed at resonant frequencies of 2 and 2.2 GHz with a bandwidth of 0.52 GHz, -28 dB return loss and -0.125 dB insertion loss while NBSF has designed for electrical specifications of 2.37 GHz center frequency, 20 MHz rejection bandwidth, -0.1873 dB return loss and 13.746 dB insertion loss. The proposed technique offers a new alternative to construct low-cost high-performance filter devices, suitable for a wide range of wireless communication systems.
本文介绍了一种新型的宽带通滤波器(WBPF)和窄带阻滤波器(NBSF),它们包含两个微带谐振器,每个谐振器基于希尔伯特分形几何的第二次迭代。通过使用介电常数为10.8、厚度为1.27毫米的基板,利用希尔伯特谐振器之间的耦合间隙参数(d)来调整滤波器的通带或阻带类型。给出并研究了数值模拟结果以及d参数对滤波器类型和频率响应的参数研究。宽带通滤波器在2 GHz和2.2 GHz的谐振频率下设计,带宽为0.52 GHz,回波损耗为-28 dB,插入损耗为-0.125 dB,而窄带阻滤波器针对中心频率2.37 GHz、抑制带宽20 MHz、回波损耗-0.1873 dB和插入损耗13.746 dB的电气规格进行设计。所提出的技术为构建低成本高性能滤波器器件提供了一种新的选择,适用于广泛的无线通信系统。