Compact, Efficient, and Wideband Near-Field Resonant Parasitic Filtennas

M. Tang, Yang Wang, Ting Shi
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Abstract

As a hybrid component in RF front-end systems, filtennas possess the distinctive advantages of simultaneously combining filtering and radiating performance characteristics. Consequently, filtennas not only save space and costs but also reduce transmission losses. In this chapter, three sorts of filtennas have been proposed: the first sort is band-pass/band-stop filtennas, which are mainly realized by assembling band-pass/band-stop filters and antennas to achieve the combined functions; the second sort is multi-resonator-cascaded filtennas, which are obtained by altering the coupled-resonators in the last stage of the filters to act as the radiating elements; and the third sort is near-field resonant parasitic, bandwidth-enhanced filtennas, which are accomplished through organically combining radiator and filtering structures. For the second and third sorts, it is worth noting that the design methods witness significant electrical size reduction without degrading the radiation performance of the filtennas in general.
紧凑,高效,宽带近场共振寄生滤波器
滤波器作为射频前端系统中的混合元件,具有同时结合滤波和辐射性能特性的显著优势。因此,滤波器不仅节省了空间和成本,而且减少了传输损耗。在本章中,提出了三种滤波器:第一类是带通/带阻滤波器,主要通过将带通/带阻滤波器与天线组装在一起实现组合功能;第二类是多谐振器级联滤波器,它是通过改变滤波器最后一级的耦合谐振器作为辐射元件而获得的;第三种是近场共振寄生带宽增强滤波器,它是通过辐射体和滤波结构的有机结合来实现的。对于第二种和第三种,值得注意的是,设计方法见证了显著的电尺寸减小,而不会降低滤波器的辐射性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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