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Investigation of New Microstrip Bandpass Filter Based on Patch Resonator With Geometrical Fractal Slot

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Date

2016

Journal Title

Journal ISSN

Volume Title

Publisher

Public Library Science

Open Access Color

GOLD

Green Open Access

Yes

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0

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3

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No
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Top 10%
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Top 10%
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Top 10%

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Abstract

A compact dual-mode microstrip bandpass filter using geometrical slot is presented in this paper. The adopted geometrical slot is based on first iteration of Cantor square fractal curve. This filter has the benefits of possessing narrower and sharper frequency responses as compared to microstrip filters that use single mode resonators and traditional dual-mode square patch resonators. The filter has been modeled and demonstrated by Microwave Office EM simulator designed at a resonant frequency of 2 GHz using a substrate of epsilon(r) = 10.8 and thickness of h = 1.27 mm. The output simulated results of the proposed filter exhibit 22 dB return loss, 0.1678 dB insertion loss and 12 MHz bandwidth in the passband region. In addition to the narrow band gained, miniaturization properties as well as weakened spurious frequency responses and blocked second harmonic frequency in out of band regions have been acquired. Filter parameters including insertion loss, return loss, bandwidth, coupling coefficient and external quality factor have been compared with different values of perturbation dimension (d). Also, a full comparative study of this filter as compared with traditional square patch filter has been considered.

Description

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

Keywords

Miniaturization, Science, Q, R, Equipment Design, Models, Theoretical, Fractals, Medicine, Computer Simulation, Electronics, Microwaves, Research Article

Fields of Science

02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering

Citation

Mazeel, Y.S., Eyyuboğlu, H.T. (2016). Investigation of new microstrip bandpass filter based on patch resonator with geometrical fractal slot. Plos One, 11(4). http://dx.doi.org/10.1371/journal.pone.0152615

WoS Q

Q2

Scopus Q

Q1
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OpenCitations Citation Count
12

Source

PLOS ONE

Volume

11

Issue

4

Start Page

e0152615

End Page

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Citations

CrossRef : 2

Scopus : 33

PubMed : 2

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Mendeley Readers : 13

SCOPUS™ Citations

33

checked on Feb 25, 2026

Web of Science™ Citations

12

checked on Feb 25, 2026

Page Views

2

checked on Feb 25, 2026

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1.43569814

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