ctrlnum 15549
fullrecord <?xml version="1.0"?> <dc schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd"><relation>https://eprints.untirta.ac.id/15549/</relation><title>Bandwidth and Gain&#xD; Enhancement of MIMO&#xD; Antenna by Using Ring and&#xD; Circular Parasitic with Air-Gap&#xD; Microstrip Structure</title><creator>Firmansyah, Teguh</creator><creator>Herudin, Herudin</creator><creator>Suhendar, Suhendar</creator><creator>Wiryadinata, Romi</creator><creator>Santoso, M. Iman</creator><creator>Rama Denny, Yus</creator><creator>Supriyanto, Toto</creator><subject>T Technology (General)</subject><subject>TA Engineering (General). Civil engineering (General)</subject><subject>TK Electrical engineering. Electronics Nuclear engineering</subject><description>This research was proposed a circular patch MIMO antenna by using a ring and circular parasitic &#xD; radiator structure. As a novelty, in order to enhance bandwidth and gain of circular patch MIMO antenna, a &#xD; conventional circular patch MIMO antenna will be added a ring and a circular parasitic. Therefore, this &#xD; research was investigated a conventional MIMO antenna (C-MA), ring parasitic MIMO antenna (RP-MA), &#xD; and circular parasitic MIMO antenna (CP-MA) as Model 1, Model 2, and Model 3, respectively. This MIMO &#xD; antenna was designed on FR4 microstrip substrate with &#xF065;r= 4.4, thickness h=1.6 mm, and tan &#xF064;= 0.0265. &#xD; This MIMO antenna has center frequency 2.35 GHz which is a frequency band for LTE application in &#xD; Indonesia. An Advance Design System (ADS) software was used to determine the antenna parameters. &#xD; The MIMO antenna C-MA / RP-MA/ CP-MA achieves 2.36GHz/ 2.38GHz/ 2.38 GHz, 70 MHz/ 100 MHz/ &#xD; 120 MHz, 1.625 dBi/ 4.066 dBi/ 4.117 dBi, 6.414 dBi/ 7.26 dBi/ 7.153 dBi, 33.9 %/ 47.8 %/ 49.70 %, -12.35 &#xD; dB/ -22.21 dB/ -23.66 dB, and -30.924 dB/ -28.46 dB/ -27.59 dB for center frequency, bandwidth, gain, &#xD; directivity, efficiency, reflection coefficient, and mutual coupling, respectively. Compared to C-MA (Model1) &#xD; performances, The result showed that proposed antenna has wider-bandwidth/ higher-gain with 42.8%/ &#xD; 150.2 %, and 71.4%/ 163.3% for RP-MA (Model 2) and CP-MA (Model 3), respectively. The proposed &#xD; antenna has size of 50 mm x 130 mm x 23.2 mm. Measured results are in a good agreement with the &#xD; simulated results.&#xD; Keywords: Antenna, MIMO, ring parasitic, circular parasitic</description><date>2017-09</date><type>Journal:Article</type><type>PeerReview:PeerReviewed</type><type>Book:Book</type><language>eng</language><identifier>https://eprints.untirta.ac.id/15549/1/3.%20JIB%2017%25.pdf</identifier><type>Book:Book</type><language>eng</language><identifier>https://eprints.untirta.ac.id/15549/2/c3%20Bandwide%20and%20Gain.pdf</identifier><identifier> Firmansyah, Teguh and Herudin, Herudin and Suhendar, Suhendar and Wiryadinata, Romi and Santoso, M. Iman and Rama Denny, Yus and Supriyanto, Toto (2017) Bandwidth and Gain Enhancement of MIMO Antenna by Using Ring and Circular Parasitic with Air-Gap Microstrip Structure. TELKOMNIKA, 15 (3). pp. 1155-1163. ISSN 1693-6930 </identifier><recordID>15549</recordID></dc>
language eng
format Journal:Article
Journal
PeerReview:PeerReviewed
PeerReview
Book:Book
Book
author Firmansyah, Teguh
Herudin, Herudin
Suhendar, Suhendar
Wiryadinata, Romi
Santoso, M. Iman
Rama Denny, Yus
Supriyanto, Toto
title Bandwidth and Gain Enhancement of MIMO Antenna by Using Ring and Circular Parasitic with Air-Gap Microstrip Structure
publishDate 2017
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
url https://eprints.untirta.ac.id/15549/1/3.%20JIB%2017%25.pdf
https://eprints.untirta.ac.id/15549/2/c3%20Bandwide%20and%20Gain.pdf
https://eprints.untirta.ac.id/15549/
contents This research was proposed a circular patch MIMO antenna by using a ring and circular parasitic radiator structure. As a novelty, in order to enhance bandwidth and gain of circular patch MIMO antenna, a conventional circular patch MIMO antenna will be added a ring and a circular parasitic. Therefore, this research was investigated a conventional MIMO antenna (C-MA), ring parasitic MIMO antenna (RP-MA), and circular parasitic MIMO antenna (CP-MA) as Model 1, Model 2, and Model 3, respectively. This MIMO antenna was designed on FR4 microstrip substrate with r= 4.4, thickness h=1.6 mm, and tan = 0.0265. This MIMO antenna has center frequency 2.35 GHz which is a frequency band for LTE application in Indonesia. An Advance Design System (ADS) software was used to determine the antenna parameters. The MIMO antenna C-MA / RP-MA/ CP-MA achieves 2.36GHz/ 2.38GHz/ 2.38 GHz, 70 MHz/ 100 MHz/ 120 MHz, 1.625 dBi/ 4.066 dBi/ 4.117 dBi, 6.414 dBi/ 7.26 dBi/ 7.153 dBi, 33.9 %/ 47.8 %/ 49.70 %, -12.35 dB/ -22.21 dB/ -23.66 dB, and -30.924 dB/ -28.46 dB/ -27.59 dB for center frequency, bandwidth, gain, directivity, efficiency, reflection coefficient, and mutual coupling, respectively. Compared to C-MA (Model1) performances, The result showed that proposed antenna has wider-bandwidth/ higher-gain with 42.8%/ 150.2 %, and 71.4%/ 163.3% for RP-MA (Model 2) and CP-MA (Model 3), respectively. The proposed antenna has size of 50 mm x 130 mm x 23.2 mm. Measured results are in a good agreement with the simulated results. Keywords: Antenna, MIMO, ring parasitic, circular parasitic
id IOS3442.15549
institution Universitas Sultan Ageng Tirtayasa
institution_id 89
institution_type library:university
library
library Perpustakaan Universitas Sultan Ageng Tirtayasa
library_id 598
collection Repository Universitas Sultan Ageng Tirtayasa
repository_id 3442
subject_area Administrasi Negara dan Militer
Akuntansi
Arsitektur
city KOTA SERANG
province BANTEN
repoId IOS3442
first_indexed 2023-03-04T21:43:49Z
last_indexed 2023-04-29T09:39:00Z
recordtype dc
_version_ 1764503586464595968
score 17.538404