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Compact Microwave Dual-band Bandpass Filter Design

机译:紧凑型微波双频带通滤波器设计

摘要

The modern wireless communication systems require dual-band bandpass filters to support the standards that work at multiple frequency bands. This thesis demonstrates two design approaches for the development of compact microwave dual-band bandpass filters. The first approach is based on synthesising a dual-passband filter response utilising only one resonant frequency of the resonators. The second approach employs dual-band resonators that have tuneable the first and the second resonant frequencies to form the dual-passbands filter response.udThe dual-passband response synthesis method synthesises a response with dual passbands that is generated by a frequency transformation that places a finite frequency zero within the single- passband of a filter to split it into dual passbands. The transformed dual-passband response is characterised by the synthesised coupling matrix that consists of the coupling coefficients between coupled resonators. Two filters have been designed and fabricated using microstrip square open-loop and TE01δ mode quarter cylindrical dielectric resonators. The investigation based on simulation studies and measured results revealed that unloaded quality factor of the resonator is required to be ten times greater than the quality factor of each passband in order to realise the narrow passbands.udThe dual-band resonator methods employ multiple resonant modes of the resonator operating at different frequencies to implement the multiple passbands, respectively. Stepped impedance resonators in stripline and coaxial configurations have been presented and analysed for the realisation of dual-band bandpass filters. A second order dual-band bandpass filter formed by coaxial stepped impedance resonators has been designed, fabricated and tested. The measured frequency response agree well with the simulated response. The estimated breakdown power shows that the filter is capable of high power applications. Non-uniform pitch helical resonators are also proposed for the implementation of dual-band bandpass filters. Two non-uniform pitch helical resonator structures have been analytically modelled. The theoretical models of the non- uniform pitch helical resonators have been developed for accurate prediction of its dual-band characteristics. It is also employed in the general design process of the non-uniform pitch helical resonators. Resonator examples have been presented to show the applicability and validity of the analysis and simulation. Three dual-band bandpass filters have been designed and implemented using non-uniform pitch helical resonators. Their measured frequency responses agree reasonably with the ideal responses. Additionally, the simulation shows that the designed dual-band bandpass filters have relatively high power handling capability.
机译:现代无线通信系统需要双频带通滤波器来支持在多个频带上工作的标准。本文论证了开发紧凑型微波双带通滤波器的两种设计方法。第一种方法基于仅利用谐振器的一个谐振频率合成双通带滤波器响应。第二种方法采用双频带谐振器,该双频带谐振器具有可调谐的第一和第二谐振频率,以形成双通带滤波器响应。 ud双通带响应合成方法可合成具有双通带的响应,该响应由频率转换产生,滤波器的单通带内的有限频率零,将其分成双通带。转换后的双通带响应的特征在于合成的耦合矩阵,该矩阵由耦合谐振器之间的耦合系数组成。使用微带方形开环和TE01δ模式四分之一圆柱介电谐振器设计和制造了两个滤波器。基于仿真研究和测量结果的调查表明,为了实现窄通带,要求谐振器的空载品质因数要比每个通带的品质因数大十倍。 ud双频谐振器方法采用多种谐振模式谐振器的工作在不同的频率以分别实现多个通带。已经提出并分析了带状线和同轴配置中的阶梯式阻抗谐振器,以实现双频带带通滤波器。已经设计,制造和测试了由同轴步进阻抗谐振器形成的二阶双带通滤波器。测得的频率响应与模拟响应非常吻合。估计的击穿功率表明该滤波器具有高功率应用的能力。还提出了非均匀螺距螺旋谐振器以实现双频带带通滤波器。已经对两个非均匀螺距螺旋谐振器结构进行了分析建模。已经开发出非均匀螺距螺旋谐振器的理论模型以准确预测其双频特性。它也被用于非均匀螺距螺旋谐振器的一般设计过程中。给出了谐振器示例,以显示分析和仿真的适用性和有效性。已经使用非均匀螺距螺旋谐振器设计和实现了三个双带通滤波器。它们测得的频率响应与理想响应合理地吻合。此外,仿真表明,设计的双带通滤波器具有相对较高的功率处理能力。

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    Wu Yahui;

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  • 年度 2017
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