基于siw的输入-无反射滤波器/互补双工器结构滤波器

IF 4.1 1区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Shiyan Wang;Hao-Chen Li;Li Yang;Gang Zhang;Roberto Gómez-García
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引用次数: 0

摘要

本文提出了一种利用互补双工器设计原理的基板集成波导(SIW)上无输入反射滤波器/滤波天线技术。通过提取和控制相邻siw空腔之间的耦合以满足预先设计的耦合矩阵,可以获得具有带外rf输入无反射能力的带通型滤波功能。为此,采用一对频率互补通道,即用于传输的带通通道和用于阻带射频功率吸收的互补电阻负载带阻通道。基于这种设计方法,实现了三阶输入-无反射SIW带通滤波器和二阶输入-吸收SIW双工器。随后,将带通通道的最后一个腔腔谐振器替换为基于siw的辐射器,形成具有相同输入反射频率响应的滤波器。以这种方式,基于上述输入无反射滤波器和双工器,设想了具有无反射特性的单频和双频siw滤波器。提供了制造的概念验证原型的测量结果,以实验验证所提出的基于无输入反射siw的滤波器/滤波器的设计方法。对于这些内置的滤波器、双工器、单频和双频滤波器,宽带无反射频率范围分别比其相关的工作频带大47.5倍、18.06倍、27.7倍和11.6倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SIW-Based Input-Reflectionless Filter/Filtenna Using Complementary-Diplexer Architectures
In this article, a class of input-reflectionless filter/ filtenna on substrate-integrated-waveguide (SIW) technology that exploits complementary-diplexer design principles is proposed. By extracting and controlling the couplings between the adjacent SIW-based cavities to satisfy a predesigned coupling matrix, a bandpass-type filtering functionality with out-of-band RF-input-reflectionless capabilities can be obtained. To this aim, a pair of frequency-complementary channels is employed, namely a bandpass channel for transmission and its complementary resistively loaded bandstop counterpart for stopband RF-power absorption. Based on this design approach, a third-order input-reflectionless SIW bandpass filter and a second-order input-absorptive SIW diplexer are realized. Subsequently, the last cavity resonator of the bandpass channel is replaced by a SIW-based radiator to form a filtenna with the same input-reflection frequency response. In this manner, based on the aforementioned input-reflectionless filter and diplexer, single- and dual-band SIW-based filtennas with reflectionless characteristics are conceived. Measured results of manufactured proof-of-concept prototypes are provided to experimentally validate the proposed design methodology of input-reflectionless SIW-based filter/filtenna. For these built devices of filter, diplexer, and single- and dual-band filtennas, wide-band reflectionless frequency ranges being $47.5\times $ , $18.06\times $ , $27.7\times $ , and $11.6\times $ larger than their associated operational frequency bands are, respectively, demonstrated.
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来源期刊
IEEE Transactions on Microwave Theory and Techniques
IEEE Transactions on Microwave Theory and Techniques 工程技术-工程:电子与电气
CiteScore
8.60
自引率
18.60%
发文量
486
审稿时长
6 months
期刊介绍: The IEEE Transactions on Microwave Theory and Techniques focuses on that part of engineering and theory associated with microwave/millimeter-wave components, devices, circuits, and systems involving the generation, modulation, demodulation, control, transmission, and detection of microwave signals. This includes scientific, technical, and industrial, activities. Microwave theory and techniques relates to electromagnetic waves usually in the frequency region between a few MHz and a THz; other spectral regions and wave types are included within the scope of the Society whenever basic microwave theory and techniques can yield useful results. Generally, this occurs in the theory of wave propagation in structures with dimensions comparable to a wavelength, and in the related techniques for analysis and design.
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