Low-SAR Antenna Design and Implementation for Mobile Phone Applications
This paper presents a novel approach for designing low-SAR (specific absorption rate) terminal antenna. First of all, the relationship between the magnetic field and the SAR value is deduced by using the electric field formula of SAR and Maxwell’s equations. Then, by using the boundary co...
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doaj-9f60a4f7014146e896fb8cdac77ae6c82021-07-13T23:01:27ZengIEEEIEEE Access2169-35362021-01-019964449645210.1109/ACCESS.2021.30937209468878Low-SAR Antenna Design and Implementation for Mobile Phone ApplicationsBao Lu0Bo Pang1https://orcid.org/0000-0001-7586-9761Wei Hu2https://orcid.org/0000-0002-7077-1500Wen Jiang3https://orcid.org/0000-0002-9800-2877Guangdong OPPO Mobile Telecommunications Corporation Ltd., Dongguan, ChinaNational Laboratory of Science and Technology on Antennas and Microwaves, Xidian University, Xi’an, ChinaNational Laboratory of Science and Technology on Antennas and Microwaves, Xidian University, Xi’an, ChinaNational Laboratory of Science and Technology on Antennas and Microwaves, Xidian University, Xi’an, ChinaThis paper presents a novel approach for designing low-SAR (specific absorption rate) terminal antenna. First of all, the relationship between the magnetic field and the SAR value is deduced by using the electric field formula of SAR and Maxwell’s equations. Then, by using the boundary conditions of the medium, the interaction mechanism between the radiated magnetic field of the antenna and the magnetic field inside human tissue is studied. Next, the relationship between the surface current and the radiated magnetic field of antenna is constructed. The approach of reducing the antenna radiated magnetic field is proposed by directly adjusting the antenna surface current, so that the SAR of human tissues is reduced. Finally, two low-SAR antennas are designed according to the proposed approach. The simulation and measurement results of the two low-SAR antennas show that the −6 dB bandwidth of both antennas is 2.4-2.49 GHz, which can meet the 2.4 G WLAN frequency band. At the same time, compared with the reference antenna, the peak values of 10 g average SAR of two antennas are reduced by more than 30%. In addition, the measured efficiencies of the two low-SAR antennas are higher than 40% in the operating frequency range. The validity of the proposed approach is proved by the simulation and measurement results of the antenna, which can be used to guide the SAR reduction design of mobile terminal antennas.https://ieeexplore.ieee.org/document/9468878/Inverted-F antennalow SAR valuemetal rimmobile terminal applications |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bao Lu Bo Pang Wei Hu Wen Jiang |
spellingShingle |
Bao Lu Bo Pang Wei Hu Wen Jiang Low-SAR Antenna Design and Implementation for Mobile Phone Applications IEEE Access Inverted-F antenna low SAR value metal rim mobile terminal applications |
author_facet |
Bao Lu Bo Pang Wei Hu Wen Jiang |
author_sort |
Bao Lu |
title |
Low-SAR Antenna Design and Implementation for Mobile Phone Applications |
title_short |
Low-SAR Antenna Design and Implementation for Mobile Phone Applications |
title_full |
Low-SAR Antenna Design and Implementation for Mobile Phone Applications |
title_fullStr |
Low-SAR Antenna Design and Implementation for Mobile Phone Applications |
title_full_unstemmed |
Low-SAR Antenna Design and Implementation for Mobile Phone Applications |
title_sort |
low-sar antenna design and implementation for mobile phone applications |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2021-01-01 |
description |
This paper presents a novel approach for designing low-SAR (specific absorption rate) terminal antenna. First of all, the relationship between the magnetic field and the SAR value is deduced by using the electric field formula of SAR and Maxwell’s equations. Then, by using the boundary conditions of the medium, the interaction mechanism between the radiated magnetic field of the antenna and the magnetic field inside human tissue is studied. Next, the relationship between the surface current and the radiated magnetic field of antenna is constructed. The approach of reducing the antenna radiated magnetic field is proposed by directly adjusting the antenna surface current, so that the SAR of human tissues is reduced. Finally, two low-SAR antennas are designed according to the proposed approach. The simulation and measurement results of the two low-SAR antennas show that the −6 dB bandwidth of both antennas is 2.4-2.49 GHz, which can meet the 2.4 G WLAN frequency band. At the same time, compared with the reference antenna, the peak values of 10 g average SAR of two antennas are reduced by more than 30%. In addition, the measured efficiencies of the two low-SAR antennas are higher than 40% in the operating frequency range. The validity of the proposed approach is proved by the simulation and measurement results of the antenna, which can be used to guide the SAR reduction design of mobile terminal antennas. |
topic |
Inverted-F antenna low SAR value metal rim mobile terminal applications |
url |
https://ieeexplore.ieee.org/document/9468878/ |
work_keys_str_mv |
AT baolu lowsarantennadesignandimplementationformobilephoneapplications AT bopang lowsarantennadesignandimplementationformobilephoneapplications AT weihu lowsarantennadesignandimplementationformobilephoneapplications AT wenjiang lowsarantennadesignandimplementationformobilephoneapplications |
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1721304627327008768 |