3-Dimensional High Gain High Isolation Ultra-Wide Band Antenna Array with PRS Layer


Abstract views: 4 / PDF downloads: 4

Authors

  • Ali Ahmad U.E.T
  • Rashid Saleem U.E.T
  • Muhammad Farhan Shafique COMSATS

Keywords:

PRS, Machine-to-Machine Communication, UWB, Defective Ground Plane, Fabry-Perot Cage, MIMO

Abstract

This paper presents a 3-dimensional, Ultra-wide band MIMO array antenna for high gain
(M2M) communication environments. This antenna supports Ultra-Wide band (3.2GHz
10.5GHz) frequencies. The radiating patch is made from 1.6mm thick FR-4 substrate. To increase the
isolation between radiating elements, parasitic structures are used. The parasitic structures are placed
alongside feedline as well as radiating elements. A Defective ground plane is implemented to increase
bandwidth and radiation coefficient of array. A Partial Reflecting Surface (PRS) layer, also fabricated on
a similar FR-4 substrate is used above the antenna layer to improve the antenna's gain and bandwidth.
More crucially, the suggested PRS antenna improves gain by 3dB average over entire ultra-wide band.
Based on simulation and measurement results, this configuration appears to be a viable contender for
Machine-to-Machine(M2M) communication.

Downloads

Download data is not yet available.

Author Biographies

Ali Ahmad, U.E.T

Department of Telecommunication Engineering, Taxila, Pakistan

Rashid Saleem, U.E.T

Department of Telecommunication Engineering,  Taxila, Pakistan

Muhammad Farhan Shafique, COMSATS

Center for Advanced Studies in Telecommunication, Islamabad, Pakistan

References

L. D. Xu, W. He and S. Li, "Internet of things in Industries: A Survey," IEEE Transactions on Indust-rial Informatics, vol. 10, no. 4, pp. 2233-2243, 2014.

K. Y.Yazdandoost and R. Miura, "Compact printed Multiband antenna for M2M applications," in 8th European Conference on Antennas and Propag-ation(EuCAP), 2014.

M. Moosazadeh and S. Kharkovsky, "Compact and small planar monopole antenna with symmetrical L- and U-shaped slots for WLAN/WiMAX applica-tions," IEEE Antennas and Wireless Propagation Letters, vol. 13, pp. 388-391, 2014.

J. Ghosh, D. Mitra and S. Das, "Mutual Coupling Reduction of Slot Antenna Array by Controlling Surface Wave Propagation," IEEE Trans. Antennas Propag., vol. 67, no. 2, 2019.

Y. L. a. S. G. H. Huang, "Uniplanar differentially driven UWB polarisation diversity antenna with band-notched characteristics," Electronic Letters, vol. 51, pp. 206-207, 2015.

S. I. Jafri, R. Saleem, M. F. Shafique and a. A. K.Brown, "Compact reconfigurable multiple-inputmultiple-output antenna for ultra-wideband Applications," IET Microwaves, Antennas & Prop., vol. 10, pp. 413-419, 2016.

K. M. R. K. a. K. S. R. K. S. Vishvaksenan, "Mutual Coupling Reduction in Microstrip Patch Antenna Arrays Using Parallel Coupled-Line Resonators," IEEE Antennas Wirel. Propag. Lett., vol. 16, 2017.

L. Zhao and K.-L. Wu, "A Dual-Band Coupled Resonator Decoupling Network for two coupled antennas," IEEE Trans. Antennas Propag., vol. 63, no. 7, 2015.

K. Wei, J.-Y. Li, L. Wang, Z.-J. Xing and R. Xu, "Mutual Coupling Reduction by Novel Fractal Defected Ground Structure Bandgap Filter," IEEE Trans. Antennas Propag., vol. 64, no. 10, 2016.

K. Wei and B.-C. Zhu, "The Novel W Parasitic Strip for the Circularly Polarized Microstrip Antennas Design and the Mutual Coupling Reduction Between them," IEEE Trans. Antennas Propag., vol. 27, no. 2, 2019.

J. Guo, F. Liu, L. Zhao, Y. Yin, G.-L. Huang and Y.Li, "Meta-Surface Antenna Array Decoupling Designs for Two Linear Polarized Antennas Coupled in H-Plane and E-Plane," IEEE Access, vol. 7, 2019.

M. Akbari, M. M. Ali, M. Farahani, A. R. Sebak and T. Denidni, "Spatially Mutual coupling reduction between CP‐MIMO antennas using FSS superstrate," Electronic Letters, vol. 53, no. 08, 2017.

S. Bibi, R. Saleem, A. Q. 2, S. u. Rehman and M. F. Shafique, "Dual-Band Antenna for High Gain M2M Communication Using PRS," ACES , vol. 32, no. 11, 2017.

Z. H. Jiang, P. E. Sieber, L. Kang and D. H. Werner, "Restoring Intrinsic Properties of Electromagnetic Radiators Using Ultralightweight Integrated Metasurface cloaks," Adv. Funct. Mater, vol. 25, no. 29, 2015.

Z. Liu, J.Wang, S.Qu, J.Zhang, H.Ma, Z.Xu and A.Zhang., "Enhancing isolation of antenna arrays by simultaneously blocking and guiding magnetic field lines using megnatic metamaterials," Appl. Phys. Lett., vol. 109, no. 15, 2016.

X. Tan, W. Wang, Y. Wu, Y. Liu and A. A. Kishk, "Enhancing Isolation in DualBand Meander-Line Multiple Antenna by Employing Split EBG Structure," IEEE Trans. Antennas Propag., vol. 67, no. 4, 2019.

D. S. S. N. B. a. A. d. L. D. Germain, "Phase-compensated metasurface for a conformal microwave antenna," Applied Physics Letters, vol. 102, no. 12, 2013.

F. C. a. F. D. F. A. Hosseini, "Gain enhancement of a V-band antenna using a Fabry-Pérot cavity with a self-sustained all-metal cap with FSS," IEEE Transactions on Antennas and Propagation, vol. 63, no. 3, pp. 909-921, 2015.

M.-C. Tang, Z.Chen, H.Wang, B. M.Li, J.Wang, Z.Shi and R. Ziolkowski, "Mutual Coupling Reduction Using Meta-Structures for Wideband, DualPolarized, and High-Density Patch Arrays," IEEE Trans. Antennas Propag., vol. 65, no. 08, 2017.

K.-L. Wu, C. Wei, X. Mei and Z.-Y. Zhang, "Array-Antenna Decoupling Surface," IEEE Trans. Antennas Propag., vol. 65, no. 12, 2017.

A. A. e. al., "Isolation improvement in UWB-MIMO antenna system using slotted stub," Electronics, p. 1582, 2020.

S. M. R. Islam, D. Kwak, M. H. Kabir and M. Hossain, "The Internet of things for Healthcare: A comprehensive Survey," IEEE Access, vol. 3, pp. 678-708, 2015.

M. Farahani, J. Pourahmadazar, M. Akbari, M. Nedil, A. R. Sebak and T. A.Denidini, "Mutual Coupling Reduction in Millimeter-Wave MIMO Antenna Array Using a Metamaterial Polarization-Rotator Wall," IEEE Antennas Wirel. Propag. Lett., vol. 16, 2017.

Downloads

Published

2024-10-13

How to Cite

Ahmad, A., Saleem, R., & Shafique, M. F. (2024). 3-Dimensional High Gain High Isolation Ultra-Wide Band Antenna Array with PRS Layer. International Journal of Advanced Natural Sciences and Engineering Researches, 7(10), 34–41. Retrieved from https://as-proceeding.com/index.php/ijanser/article/view/2059

Issue

Section

Articles