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A Compact Wideband SIW Bandpass Filter with Wide Stopband and High Selectivity

机译:具有宽阻带和高选择性的紧凑型宽带SIW带通滤波器

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A novel method to design a wideband substrate integrated waveguide (SIW) bandpass filter (BPF) with compact size, wide stopband and high selectivity is presented. In this method some unique electromagnetic band-gap (EBG) cells are periodically etched on the top layer of SIW to realize a wide passband propagating below the equivalent waveguide cutoff frequency. By changing the configuration of EBG cells, undesired harmonics in upper stopband can be suppressed and a wideband BPF with wide stopband can be obtained. By symmetrically loading two complementary split ring resonators (CSRRs) on the tapered gradient lines of the input/output ports, a transmission zero near the passband can be introduced, and it makes the frequency selectivity of upper sideband improve significantly. As a verification, a wideband SIW BPF with a 3.02 GHz absolute bandwidth (ABW) and a 64.7% fractional bandwidth (FBW) centered at 4.67 GHz is designed, simulated, manufactured, and measured. The results of the experiment and simulation are in good agreement.
机译:提出了一种设计紧凑,阻带宽,选择性高的宽带基片集成波导(SIW)带通滤波器(BPF)的新方法。在这种方法中,周期性地在SIW的顶层上刻蚀一些独特的电磁带隙(EBG)单元,以实现在等效波导截止频率以下传播的宽通带。通过改变EBG单元的配置,可以抑制上阻带中不希望的谐波,并且可以获得具有较宽阻带的宽带BPF。通过在输入/输出端口的渐变斜线上对称地加载两个互补的裂环谐振器(CSRR),可以在通带附近引入零传输,这使得上边带的频率选择性大大提高。作为验证,设计,仿真,制造和测量了具有3.02 GHz绝对带宽(ABW)和64.7%分数带宽(FBW)以4.67 GHz为中心的宽带SIW BPF。实验结果与仿真结果吻合良好。

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