基于双模微带方环谐振器的新型小型化分形带通滤波器

Jawad K. Ali
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引用次数: 47

摘要

介绍了一种新的分形双模微带带通滤波器设计,试图为现代无线应用生产高度小型化的滤波器。在分形生成过程中,采用常规双模方环谐振器作为启动器,基于第三次迭代类minkowski预分形几何生成滤波器结构。该分形几何的空间填充特性、自相似性和结构的对角线对称性对应于该分形几何的连续迭代层次,可以产生具有可接受性能的缩小尺寸的滤波器结构。这种分形几何的第三次迭代产生的带通滤波器结构可以认为是一种新颖的设计,具有足够的性能。与工作在相同频率和使用相同衬底材料的传统双模方环谐振器相比,该设计结构的尺寸减小了约72%。此外,新的设计技术似乎是可靠的,因为与文献报道的相比,它为滤波器设计者提供了更大的自由度和进一步缩小的尺寸。
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A new miniaturized fractal bandpass filter based on dual-mode microstrip square ring resonator
A novel fractal dual-mode microstrip bandpass filter design has been introduced in an attempt to produce filters with highly miniaturized size for modern wireless applications. The filter structure has been generated based on the 3rd iteration Minkowski-like pre-fractal geometry, using the conventional dual-mode square ring resonator as the initiator in the fractal generation process. The space-filling property, self-similarity and the diagonal symmetry of the structures corresponding to the successive iteration levels of this fractal geometry have found to produce reduced size filter structures with accepted performance. The bandpass filter structure produced by the 3rd iteration of this fractal geometry can be considered as a novel design with adequate performance. This design structure possesses a size reduction of about 72% compared with the conventional dualmode square ring resonator operating at the same frequency and using the same substrate material. In addition, the new design technique seems reliable, since it provides the filter designers with more degree of freedom and further size reduction as compared with those reported in the literatures.
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