A Study of Antenna System for High Order MIMO Device

Three types of compact MIMO (Multiple-Input Multiple-Output) antenna systems with four and six elements for mobile handsets are studied in this paper. The MIMO antenna system is built on a FR4 substrate of the dimensions 136 mm × 68.8 mm × 1 mm. The antenna element is a folded planar inverted-F ante...

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Main Authors: Zhaoliang Chen, Wen Geyi, Ming Zhang, Jun Wang
Format: Article
Language:English
Published: Wiley 2016-01-01
Series:International Journal of Antennas and Propagation
Online Access:http://dx.doi.org/10.1155/2016/1936797
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author Zhaoliang Chen
Wen Geyi
Ming Zhang
Jun Wang
author_facet Zhaoliang Chen
Wen Geyi
Ming Zhang
Jun Wang
author_sort Zhaoliang Chen
collection DOAJ
description Three types of compact MIMO (Multiple-Input Multiple-Output) antenna systems with four and six elements for mobile handsets are studied in this paper. The MIMO antenna system is built on a FR4 substrate of the dimensions 136 mm × 68.8 mm × 1 mm. The antenna element is a folded planar inverted-F antenna with added resonating branches wound on a small dielectric cube of the dimensions 10 mm × 10 mm × 5 mm, which is the smallest volume so far reported covering the frequency bands 1880 MHz–1920 MHz and 2300 MHz–2620 MHz for GSM1900, LTE2300, 2.4-GHz WLAN, and LTE2500. The effects of element numbers and configurations on the system performance are investigated. More than 10 dB isolations have been achieved by properly designing the antenna elements through the use of the pattern diversity without using decoupling circuits. The envelope correlation coefficients among the elements, the mean effective gains, the efficiencies, and the multiplexing efficiencies of the elements are also discussed.
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institution Kabale University
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spelling doaj-art-eb236170a4584be8b0a3a9918b31c18f2025-02-03T07:24:46ZengWileyInternational Journal of Antennas and Propagation1687-58691687-58772016-01-01201610.1155/2016/19367971936797A Study of Antenna System for High Order MIMO DeviceZhaoliang Chen0Wen Geyi1Ming Zhang2Jun Wang3Research Center of Applied Electromagnetics, Nanjing University of Information Science and Technology, Nanjing 210044, ChinaResearch Center of Applied Electromagnetics, Nanjing University of Information Science and Technology, Nanjing 210044, ChinaHuawei Technologies Co., Ltd., No. 360, Jiangsu Road, Binjiang District, Hangzhou 310052, ChinaHuawei Technologies Co., Ltd., No. 360, Jiangsu Road, Binjiang District, Hangzhou 310052, ChinaThree types of compact MIMO (Multiple-Input Multiple-Output) antenna systems with four and six elements for mobile handsets are studied in this paper. The MIMO antenna system is built on a FR4 substrate of the dimensions 136 mm × 68.8 mm × 1 mm. The antenna element is a folded planar inverted-F antenna with added resonating branches wound on a small dielectric cube of the dimensions 10 mm × 10 mm × 5 mm, which is the smallest volume so far reported covering the frequency bands 1880 MHz–1920 MHz and 2300 MHz–2620 MHz for GSM1900, LTE2300, 2.4-GHz WLAN, and LTE2500. The effects of element numbers and configurations on the system performance are investigated. More than 10 dB isolations have been achieved by properly designing the antenna elements through the use of the pattern diversity without using decoupling circuits. The envelope correlation coefficients among the elements, the mean effective gains, the efficiencies, and the multiplexing efficiencies of the elements are also discussed.http://dx.doi.org/10.1155/2016/1936797
spellingShingle Zhaoliang Chen
Wen Geyi
Ming Zhang
Jun Wang
A Study of Antenna System for High Order MIMO Device
International Journal of Antennas and Propagation
title A Study of Antenna System for High Order MIMO Device
title_full A Study of Antenna System for High Order MIMO Device
title_fullStr A Study of Antenna System for High Order MIMO Device
title_full_unstemmed A Study of Antenna System for High Order MIMO Device
title_short A Study of Antenna System for High Order MIMO Device
title_sort study of antenna system for high order mimo device
url http://dx.doi.org/10.1155/2016/1936797
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