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首页> 外文期刊>Progress in Artificial Intelligence >Compact Ultra-Wideband Bandpass Filters Achieved by Using a Stub-Loaded Stepped Impedance Resonator
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Compact Ultra-Wideband Bandpass Filters Achieved by Using a Stub-Loaded Stepped Impedance Resonator

机译:通过使用存根的阶梯式阻抗谐振器实现紧凑的超宽带带通滤波器

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In this paper, we develop a bandpass filter using a stub-loaded stepped impedance resonator (SLSIR) and calculate the even and odd resonant modes of this type of resonator using the input impedance/admittance analysis. In this study, two impedance ratios and two length ratios are operated as the design parameters for controlling the resonant modes of the SLSIR. Several resonant mode variation curves operating three resonant modes with different impedance ratios and two length ratios are developed. By tuning the desired impedance ratios and length ratios of the SLSIRs, compact ultra-wideband (UWB) bandpass filters (BPFs) can be achieved. Two examples of the UWB BPFs are designed in this study. The first example is UWB filter with a wide stopband and the second one is dual UWB BPF, namely, with UWB performance and a notch band. The first filter is designed for a UWB response from 3.1 to 5.26 GHz having a stopband from 5.3 to 11 GHz, with an attenuation level better than 18 dB. The second filter example is a dual UWB BPF with the frequency range from 3.1 to 5 GHz and 6 to 10.1 GHz using two sets of the proposed SLSIR. The measured results have insertion loss of less than 1 dB, and return loss greater than 10 dB. Furthermore, the coupling structures and open stub of the SLSIR also provide several transmission zeros at the skirt of the passbands for improving the passband selectivity.
机译:在本文中,我们使用存根的阶梯式阻抗谐振器(SLSIR)开发带通滤波器,并使用输入阻抗/导纳分析计算这种类型的谐振器的偶数和奇振谐振模式。在该研究中,操作两个阻抗比和两个长度比作为用于控制SLSIR的谐振模式的设计参数。开发了几种具有不同阻抗比的三种共振模式和两个长度比的若干谐振模式变化曲线。通过调整SLSIR的期望的阻抗比和长度比,可以实现紧凑的超宽带(UWB)带通滤波器(BPF)。在本研究中设计了UWB BPF的两个例子。第一个例子是具有宽的停止带的UWB过滤器,第二个是双UWB BPF,即,具有UWB性能和凹口频带。第一个过滤器设计用于从3.1到5.26 GHz的UWB响应,其停靠带从5.3到11 GHz,衰减水平优于18 dB。第二个过滤器示例是双UWB BPF,其频率范围为3.1至5GHz和6至10.1GHz,使用两组提出的SLSIR。测量结果具有小于1dB的插入损耗,并且返回损耗大于10 dB。此外,SLSIR的耦合结构和开口短截线还在通带的裙部处提供若干传动零,以改善通带选择性。

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