Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging

The paper presents a rectangular stepped patch antenna with defective ground plane using metamaterial based split ring structure for RF energy harvesting applications at downlink radio frequency range of GSM-1800. The aim of this design was to enhance the antenna performance with regards to imp...

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Main Authors: Devi, K. K. A., Ng, Chun Hau, Chakrabarty, C. K., Md. Din, Norashidah
Format: Conference or Workshop Item
Published: 2014
Subjects:
Online Access:http://eprints.intimal.edu.my/157/
http://ieeexplore.ieee.org/document/6920301/
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spelling my-inti-eprints.1572016-10-06T02:58:08Z http://eprints.intimal.edu.my/157/ Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging Devi, K. K. A. Ng, Chun Hau Chakrabarty, C. K. Md. Din, Norashidah TK Electrical engineering. Electronics Nuclear engineering The paper presents a rectangular stepped patch antenna with defective ground plane using metamaterial based split ring structure for RF energy harvesting applications at downlink radio frequency range of GSM-1800. The aim of this design was to enhance the antenna performance with regards to impedance bandwidth and return loss. A simulation study of the design was carried out in the Computer Simulation Technology (CST) microwave studio. The results at the resonant frequency 1.845 GHz showed that the impedance bandwidth has increased to 596 MHz, return loss have lowest value of -27.7 dB and VSWR of 1.086. There is an improvement in performance with metamaterial based antenna. 2014 Conference or Workshop Item PeerReviewed Devi, K. K. A. and Ng, Chun Hau and Chakrabarty, C. K. and Md. Din, Norashidah (2014) Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging. In: 2014 IEEE Asia Pacific Conference on Wireless and Mobile (APWiMob), 28 Aug - 30 Aug 2014, Bali, Indonesia. http://ieeexplore.ieee.org/document/6920301/
institution INTI International University
building INTI Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider INTI International University
content_source INTI Institutional Repository
url_provider http://eprints.intimal.edu.my
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Devi, K. K. A.
Ng, Chun Hau
Chakrabarty, C. K.
Md. Din, Norashidah
Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging
description The paper presents a rectangular stepped patch antenna with defective ground plane using metamaterial based split ring structure for RF energy harvesting applications at downlink radio frequency range of GSM-1800. The aim of this design was to enhance the antenna performance with regards to impedance bandwidth and return loss. A simulation study of the design was carried out in the Computer Simulation Technology (CST) microwave studio. The results at the resonant frequency 1.845 GHz showed that the impedance bandwidth has increased to 596 MHz, return loss have lowest value of -27.7 dB and VSWR of 1.086. There is an improvement in performance with metamaterial based antenna.
format Conference or Workshop Item
author Devi, K. K. A.
Ng, Chun Hau
Chakrabarty, C. K.
Md. Din, Norashidah
author_facet Devi, K. K. A.
Ng, Chun Hau
Chakrabarty, C. K.
Md. Din, Norashidah
author_sort Devi, K. K. A.
title Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging
title_short Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging
title_full Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging
title_fullStr Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging
title_full_unstemmed Design of patch antenna using metamaterial at GSM 1800 for RF energy scavenging
title_sort design of patch antenna using metamaterial at gsm 1800 for rf energy scavenging
publishDate 2014
url http://eprints.intimal.edu.my/157/
http://ieeexplore.ieee.org/document/6920301/
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score 13.211869