Patch Antenna Based on Metamaterials for a RFID Transponder

In this paper a self-diplexed antenna is proposed for a RFID transponder application. The development cycle is divided into two stages: antenna design and filters design. The antenna is based on a square microstrip patch filled with metamaterial structures. The inclusion of these structures allows s...

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Main Authors: E. Ugarte-Munoz, F. J. Herraiz-Martinez, V. Gonzalez-Posadas, D. Segovia-Vargas
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2008-06-01
Series:Radioengineering
Subjects:
Online Access:http://www.radioeng.cz/fulltexts/2008/08_02_066_071.pdf
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spelling doaj-87a4619ee2304ceba33d5f39f4b0fd192020-11-25T01:49:46ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122008-06-011726671Patch Antenna Based on Metamaterials for a RFID TransponderE. Ugarte-MunozF. J. Herraiz-MartinezV. Gonzalez-PosadasD. Segovia-VargasIn this paper a self-diplexed antenna is proposed for a RFID transponder application. The development cycle is divided into two stages: antenna design and filters design. The antenna is based on a square microstrip patch filled with metamaterial structures. The inclusion of these structures allows simultaneous operation over several frequencies, which can be arbitrarily chosen. The antenna working frequencies are chosen to be 2.45 GHz (receiver) and 1.45 GHz (transmitter). In addition, the antenna is fed through two orthogonal coupled microstrip lines, what provides higher isolation between both ports. Some filters based on metamaterial particles are coupled or connected to the antenna feeding microstrip lines to avoid undesired interferences. This approach avoids using of an external filter or diplexer, providing larger size reduction and a compact self-diplexed antenna.www.radioeng.cz/fulltexts/2008/08_02_066_071.pdfMetamaterialsself-diplexed antennasRFIDmicrostrip patch antennas
collection DOAJ
language English
format Article
sources DOAJ
author E. Ugarte-Munoz
F. J. Herraiz-Martinez
V. Gonzalez-Posadas
D. Segovia-Vargas
spellingShingle E. Ugarte-Munoz
F. J. Herraiz-Martinez
V. Gonzalez-Posadas
D. Segovia-Vargas
Patch Antenna Based on Metamaterials for a RFID Transponder
Radioengineering
Metamaterials
self-diplexed antennas
RFID
microstrip patch antennas
author_facet E. Ugarte-Munoz
F. J. Herraiz-Martinez
V. Gonzalez-Posadas
D. Segovia-Vargas
author_sort E. Ugarte-Munoz
title Patch Antenna Based on Metamaterials for a RFID Transponder
title_short Patch Antenna Based on Metamaterials for a RFID Transponder
title_full Patch Antenna Based on Metamaterials for a RFID Transponder
title_fullStr Patch Antenna Based on Metamaterials for a RFID Transponder
title_full_unstemmed Patch Antenna Based on Metamaterials for a RFID Transponder
title_sort patch antenna based on metamaterials for a rfid transponder
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2008-06-01
description In this paper a self-diplexed antenna is proposed for a RFID transponder application. The development cycle is divided into two stages: antenna design and filters design. The antenna is based on a square microstrip patch filled with metamaterial structures. The inclusion of these structures allows simultaneous operation over several frequencies, which can be arbitrarily chosen. The antenna working frequencies are chosen to be 2.45 GHz (receiver) and 1.45 GHz (transmitter). In addition, the antenna is fed through two orthogonal coupled microstrip lines, what provides higher isolation between both ports. Some filters based on metamaterial particles are coupled or connected to the antenna feeding microstrip lines to avoid undesired interferences. This approach avoids using of an external filter or diplexer, providing larger size reduction and a compact self-diplexed antenna.
topic Metamaterials
self-diplexed antennas
RFID
microstrip patch antennas
url http://www.radioeng.cz/fulltexts/2008/08_02_066_071.pdf
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AT fjherraizmartinez patchantennabasedonmetamaterialsforarfidtransponder
AT vgonzalezposadas patchantennabasedonmetamaterialsforarfidtransponder
AT dsegoviavargas patchantennabasedonmetamaterialsforarfidtransponder
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