Full Paper View Go Back
Design and Analysis of Pattern Reconfigurable Dual Band MIMO Antenna using 5G Smartphone Application
B. Asha1 , R. Gomathi2
Section:Research Paper, Product Type: Journal
Vol.7 ,
Issue.3 , pp.28-30, Jun-2019
Online published on Jul 30, 2019
Copyright © B. Asha, R. Gomathi . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
View this paper at Google Scholar | DPI Digital Library
How to Cite this Paper
- IEEE Citation
- MLA Citation
- APA Citation
- BibTex Citation
- RIS Citation
IEEE Style Citation: B. Asha, R. Gomathi, Design and Analysis of Pattern Reconfigurable Dual Band MIMO Antenna using 5G Smartphone Application, International Journal of Scientific Research in Network Security and Communication, Vol.7, Issue.3, pp.28-30, 2019.
MLA Style Citation: B. Asha, R. Gomathi "Design and Analysis of Pattern Reconfigurable Dual Band MIMO Antenna using 5G Smartphone Application." International Journal of Scientific Research in Network Security and Communication 7.3 (2019): 28-30.
APA Style Citation: B. Asha, R. Gomathi, (2019). Design and Analysis of Pattern Reconfigurable Dual Band MIMO Antenna using 5G Smartphone Application. International Journal of Scientific Research in Network Security and Communication, 7(3), 28-30.
BibTex Style Citation:
@article{Asha_2019,
author = {B. Asha, R. Gomathi},
title = {Design and Analysis of Pattern Reconfigurable Dual Band MIMO Antenna using 5G Smartphone Application},
journal = {International Journal of Scientific Research in Network Security and Communication},
issue_date = {6 2019},
volume = {7},
Issue = {3},
month = {6},
year = {2019},
issn = {2347-2693},
pages = {28-30},
url = {https://www.isroset.org/journal/IJSRNSC/full_paper_view.php?paper_id=368},
publisher = {IJCSE, Indore, INDIA},
}
RIS Style Citation:
TY - JOUR
UR - https://www.isroset.org/journal/IJSRNSC/full_paper_view.php?paper_id=368
TI - Design and Analysis of Pattern Reconfigurable Dual Band MIMO Antenna using 5G Smartphone Application
T2 - International Journal of Scientific Research in Network Security and Communication
AU - B. Asha, R. Gomathi
PY - 2019
DA - 2019/07/30
PB - IJCSE, Indore, INDIA
SP - 28-30
IS - 3
VL - 7
SN - 2347-2693
ER -
Abstract :
Double band MIMO radio wire for the 5G correspondence is proposed in this paper. The proposed radio wire comprises of four radio wire, it working at 3300-3600 MHz and 4800-5000 MHz. The radio wire planned in this letter are extraordinary from conventional 5G radio wires, the reception apparatus of this paper is opposite to the edge of the framework circuit board, it tends to be connected to the well known full-screen cell phone. As indicated by the recreation results, reflection coefficient of the modulus is less than - 6 dB, and the separation is superior to 12 dB over the band frequency of 3300-3600 MHz and 4800-5000 MHz, it will met the necessities of future 5G applications.
Key-Words / Index Term :
smart phone , 5g operation, MIMO antenna
References :
[1] Azremi, H., Costa, M., Koivunen, V., et al.: âAmbiguity analysis of isolation âbased multi-antenna structures on mobile terminal`. fifth European Conf.Antennas and Propagation(EUCAP), 2011, pp. 552â556
[2] Y.-X. Guo, H. Chu, âBroadband 60-GHz beam-steering vertical off-center dipole antennas in LTCC," IEEE Antenna Technology (iWAT), International Workshop on., pp. 177-180, Mar. 2012.
[3] W.-M.-A. Wahab, S.-S. Naeini, "Low loss H-shape SIW hybrid coupler for millimeter wave phase arrays antenna systems," IEEE Antennas and Propagation Society International Symposium (APSURSI)., pp. 1-2, Jul. 2012.
[4] Wen T, Zhu PY. 5G: A technology vision. Huawei, 2013
[5] A. Pal, A. Mehta, R. Lewis, and N. Clow, âPhase array system consisting of unit pattern reconfigurable square loop antennas,â IEEE Antennas and Propagation Society International Symposium (APSURSI)., pp. 1658-1659, Jul. 2014.
[6] M. Roig, M. Maasch, C. Damm, and R. Jakoby, "Electrically tunable liquid crystal based composite right/left-handed leak-eave antenna at 26.7GHz,â Microwave Conference (EuMC) ., pp. 331-334, Oct. 2014.
[7] C. Damm, M. Maasch, R. Gonzalo, and R. Jakoby, "Tunable composite right/left-handed leaky wave antenna based on a rectangular waveguide using liquid crystals,â IEEE in Microwave Symposium Digest (MTT) MTT-S International, pp. 53 â56, Oct 2014.
[8] Cheng-Nan Hu, Kevin Peng, Chung-Hang Yu, Tsai-Wen Hsaio and DerPhone Lin. Design of an mm-Wave Microstrip Antenna Array. Electromagnetics: Applications and Student Innovation Competition (iWEM), 2015.
[9] Wei-Shiuan Chang, Chang-Fa Yang, Chih-Kai Chang, Wen-Jiao Liao; Liang Cho, Wen-Shih Chen. Pattern Reconfigurable MillimeterWave Antenna Design for 5G Handset Applications. 2016 10th European Conference on Antennas and Propagation (EuCAP).
[10] Wei-Shiuan Chang, Chang-Fa Yang, Chih-Kai Chang, Wen-Jiao Liao; Liang Cho, Wen-Shih Chen. Pattern Reconfigurable MillimeterWave Antenna Design for 5G Handset Applications. 2016 10th European Conference Antennas and Propagation (EuCAP).
[11] Yong-Ling Ban, Zhong-Xiang Chen, Zhi Chen, Kai Kang; Joshua Wei Li. Decoupled Closely Spaced Heptaband Antenna Array for WWAN/LTE Smartphone Applications. IEEE Antennas and Wireless Propagation Letters
[12] Yong-Ling Ban, Chuan Li Chow-Yen-Desmond Sim, Gang Wu, Kin-Lu Wong 4G/5G Multiple Antennas for Future Multi-Mode Smartphone Applications. IEEE Access.
You do not have rights to view the full text article.
Please contact administration for subscription to Journal or individual article.
Mail us at ijsrnsc@gmail.com or view contact page for more details.