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A New Narrow Band Dual-Mode Microstrip Slotted Patch Bandpass Filter Design Based on Fractal Geometry

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2012

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Ieee

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Abstract

A narrowband, compact, and easily fabricated microstrip bandpass filter design is introduced in this paper as a candidate for use in modern wireless systems. The proposed filter design is based on the use of dual-mode (two pole) square slotted microstrip resonator. This microstrip bandpass filter has the advantages of possessing much narrower and sharper performance responses than those of the single mode resonator and conventional square patch filter. The proposed microstrip filter structure is fractally generated using Sierpinski fractal curve geometry applied to the conventional square microstrip patch. Filter structures resulting from the successive iterations in the fractal generation process show a considerably low insertion loss, and sharper response of about 1% fractional bandwidth as compared with the conventional microstrip square patch filter of 3% fractional bandwidth designed at the same frequency using the same substrate material. The performance of filter structures, based on dual-mode resonators up to the third iterations, has been evaluated using a full-wave based electromagnetic simulator Sonnet software package. Performance simulation results show that these filter structures offer narrower fractional bandwidth percentages as compared with other types of non- fractalized filter structures.

Description

Mezaal, Dr.Yaqeen Sabah/0000-0002-9953-9975

Keywords

Microstrip Filter, Slotted Patch Bandpass Filter, Sierpinski Fractal Geometry, Narrow Bandpass Filter

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Citation

Mezaal, Yaqeen S.; Eyyuboglu, Halil Tanyer, "A New Narrow Band Dual-Mode Microstrip Slotted Patch Bandpass Filter Design Based on Fractal Geometry", 2012 7th International Conference On Computing and Convergence Technology (Iccct2012), pp. 1180-1184, (2012)

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7th International Conference on Computing and Convergence Technology (ICCCT) -- DEC 03-05, 2012 -- Seoul, SOUTH KOREA

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1180

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1184
SCOPUS™ Citations

31

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Web of Science™ Citations

5

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