CLC number: TN82
On-line Access: 2024-08-27
Received: 2023-10-17
Revision Accepted: 2024-05-08
Crosschecked: 2020-02-24
Cited: 0
Clicked: 7563
Citations: Bibtex RefMan EndNote GB/T7714
Jia-yin Guo, Feng Liu, Guo-dong Jing, Lu-yu Zhao, Ying-zeng Yin, Guan-long Huang. Mutual coupling reduction of multiple antenna systems[J]. Frontiers of Information Technology & Electronic Engineering, 2020, 21(3): 366-376.
@article{title="Mutual coupling reduction of multiple antenna systems",
author="Jia-yin Guo, Feng Liu, Guo-dong Jing, Lu-yu Zhao, Ying-zeng Yin, Guan-long Huang",
journal="Frontiers of Information Technology & Electronic Engineering",
volume="21",
number="3",
pages="366-376",
year="2020",
publisher="Zhejiang University Press & Springer",
doi="10.1631/FITEE.1900490"
}
%0 Journal Article
%T Mutual coupling reduction of multiple antenna systems
%A Jia-yin Guo
%A Feng Liu
%A Guo-dong Jing
%A Lu-yu Zhao
%A Ying-zeng Yin
%A Guan-long Huang
%J Frontiers of Information Technology & Electronic Engineering
%V 21
%N 3
%P 366-376
%@ 2095-9184
%D 2020
%I Zhejiang University Press & Springer
%DOI 10.1631/FITEE.1900490
TY - JOUR
T1 - Mutual coupling reduction of multiple antenna systems
A1 - Jia-yin Guo
A1 - Feng Liu
A1 - Guo-dong Jing
A1 - Lu-yu Zhao
A1 - Ying-zeng Yin
A1 - Guan-long Huang
J0 - Frontiers of Information Technology & Electronic Engineering
VL - 21
IS - 3
SP - 366
EP - 376
%@ 2095-9184
Y1 - 2020
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/FITEE.1900490
Abstract: A multi-band multi-antenna system has become an important trend in the development of mobile communication systems. However, strong mutual coupling tends to occur between antenna elements with a small space, distorting array antennas’ performance. Therefore, in the multiple-input multiple-output (MIMO) antenna system, high isolation based on miniaturization of the antenna array has been pursued. We study in depth the methods of decoupling between antenna elements. Reasons for the existence of mutual coupling and advantages of mutual coupling reduction are analyzed. Then the decoupling methods proposed in recent works are compared and analyzed. Finally, we propose a metasurface consisting of double-layer short wires, which can be applied to improve the port isolation of antennas arranged along the H-plane and E-plane. Results show that the proposed metasurface has good decoupling effect on a closely placed antenna array.
[1]Akbari M, Ghalyon HA, Farahani M, et al., 2017. Spatially decoupling of CP antennas based on FSS for 30 GHz MIMO systems. IEEE Access, 5:6527-6537.
[2]Al-Hasan MJ, Denidni TA, Sebak AR, 2015. Millimeter-wave compact EBG structure for mutual coupling reduction applications. IEEE Trans Antenn Propag, 63(2):823-828.
[3]Amjadi SM, Sarabandi K, 2016. Mutual coupling mitigation in broadband multiple-antenna communication systems using feedforward technique. IEEE Trans Antenn Propag, 64(5):1642-1652.
[4]Browne DW, Manteghi M, Fitz MP, et al., 2006. Experiments with compact antenna arrays for MIMO radio communications. IEEE Trans Antenn Propag, 54(11):3239-3250.
[5]Chae SH, Oh Sk, Park SO, 2007. Analysis of mutual coupling, correlations, and TARC in WiBro MIMO array antenna. IEEE Antenn Wirel Propag Lett, 6:122-125.
[6]Chen SC, Wang YS, Chung SJ, 2008. A decoupling technique for increasing the port isolation between two strongly coupled antennas. IEEE Trans Antenn Propag, 56(12): 3650-3658.
[7]Chiu CY, Cheng CH, Murch RD, et al., 2007. Reduction of mutual coupling between closely-packed antenna elements. IEEE Trans Antenn Propag, 55(6):1732-1738.
[8]Chiu CY, Xu F, Shen SP, et al., 2018. Mutual coupling reduction of rotationally symmetric multiport antennas. IEEE Trans Antenn Propag, 66(10):5013-5021.
[9]Dhevi BL, Vishvaksenan KS, Rajakani K, 2018. Isolation enhancement in dual-band microstrip antenna array using asymmetric loop resonator. IEEE Antenn Wirel Propag Lett, 17(2):238-241.
[10]Ding CF, Zhang XY, Xue CD, et al., 2018. Novel pattern- diversity-based decoupling method and its application to multielement MIMO antenna. IEEE Trans Antenn Propag, 66(10):4976-4985.
[11]Farahani M, Pourahmadazar J, Akbari M, et al., 2017. Mutual coupling reduction in millimeter-wave MIMO antenna array using a metamaterial polarization-rotator wall. IEEE Antenn Wirel Propag Lett, 16:2324-2327.
[12]Feng DQ, Jiang CZ, Lim GB, et al., 2013. A survey of energy- efficient wireless communications. IEEE Commun Surv Tutor, 15(1):167-178.
[13]Getu BN, Andersen JB, 2005. The MIMO cube—a compact MIMO antenna. IEEE Trans Wirel Commun, 4(3):1136- 1141.
[14]Guo JY, Liu F, Zhao LY, et al., 2019. Meta-surface antenna array decoupling designs for two linear polarized antennas coupled in H-plane and E-plane. IEEE Access, 7:100442-100452.
[15]Jafri SI, Brown AK, Shafique MF, et al., 2016. Compact reconfigurable multiple-input-multiple-output antenna for ultra wideband applications. IET Microw Antenn Propag, 10(4):413-419.
[16]Larsson EG, Edfors O, Tufvesson F, et al., 2014. Massive MIMO for next generation wireless systems. IEEE Commun Mag, 52(2):186-195.
[17]Lee JY, Kim SH, Jang JH, 2015. Reduction of mutual coupling in planar multiple antenna by using 1-D EBG and SRR structures. IEEE Trans Antenn Propag, 63(9):4194-4198.
[18]Li JF, Chu QX, Li ZH, et al., 2013. Compact dual band- notched UWB MIMO antenna with high isolation. IEEE Trans Antenn Propag, 61(9):4759-4766.
[19]Li Q, Feresidis AP, Mavridou M, et al., 2015. Miniaturized double-layer EBG structures for broadband mutual coupling reduction between UWB monopoles. IEEE Trans Antenn Propag, 63(3):1168-1171.
[20]Li ZY, Du ZW, Takahashi M, et al., 2012. Reducing mutual coupling of MIMO antennas with parasitic elements for mobile terminals. IEEE Trans Antenn Propag, 60(2):473- 481.
[21]Liang PY, Wu Q, 2018. Characteristic mode analysis of antenna mutual coupling in the near field. IEEE Trans Antenn Propag, 66(7):3757-3762.
[22]Liu F, Guo JY, Zhao LY, et al., 2018. A meta-surface decoupling method for two linear polarized antenna array in sub-6 GHz base station applications. IEEE Access, 7:2759-2768.
[23]Ouyang J, Yang F, Wang ZM, 2011. Reducing mutual coupling of closely spaced microstrip MIMO antennas for WLAN application. IEEE Antenn Wirel Propag Lett, 10:310-313.
[24]Pan BC, Cui TJ, 2017. Broadband decoupling network for dual-band microstrip patch antennas. IEEE Trans Antenn Propag, 65(10):5595-5598.
[25]Soltani S, Murch RD, 2015. A compact planar printed MIMO antenna design. IEEE Trans Antenn Propag, 63(3):1140- 1149.
[26]Su SW, Lee CT, Chang FS, 2012. Printed MIMO-antenna system using neutralization-line technique for wireless USB-dongle applications. IEEE Trans Antenn Propag, 60(2):456-463.
[27]Sun HH, Ding C, Zhu H, et al., 2019. Suppression of cross- band scattering in multiband antenna arrays. IEEE Trans Antenn Propag, 67(4):2379-2389.
[28]Tang MC, Chen ZY, Wang H, et al., 2017. Mutual coupling reduction using meta-structures for wideband, dual- polarized, and high-density patch arrays. IEEE Trans Antenn Propag, 65(8):3986-3998.
[29]Wang ZY, Zhao LY, Cai YM, et al., 2018. A meta-surface antenna array decoupling (MAAD) method for mutual coupling reduction in a MIMO antenna system. Sci Rep, 8:3152.
[30]Wei K, Li JY, Wang L, et al., 2016. Mutual coupling reduction by novel fractal defected ground structure band-gap filter. IEEE Trans Antenn Propag, 64(10):4328-4335.
[31]Wu KL, Wei CW, Mei XD, et al., 2017. Array-antenna decoupling surface. IEEE Trans Antenn Propag, 65(12): 6728-6738.
[32]Xue CD, Zhang XY, Cao YF, et al., 2017. MIMO antenna using hybrid electric and magnetic coupling for isolation enhancement. IEEE Trans Antenn Propag, 65(10):5162- 5170.
[33]Yang F, Rahmat-Samii Y, 2003. Microstrip antennas integrated with electromagnetic band-gap (EBG) structures: a low mutual coupling design for array applications. IEEE Trans Antenn Propag, 51(10):2936-2946.
[34]Zhai GH, Chen ZN, Qing XM, 2016. Mutual coupling reduction of a closely spaced four-element MIMO antenna system using discrete mushrooms. IEEE Trans Microw Theory Technol, 64(10):3060-3067.
[35]Zhang S, Pedersen GF, 2016. Mutual coupling reduction for UWB MIMO antennas with a wideband neutralization line. IEEE Antenn Wirel Propag Lett, 15:166-169.
[36]Zhang S, Lau BK, Tan Y, et al., 2012. Mutual coupling reduction of two PIFAs with a T-shape slot impedance transformer for MIMO mobile terminals. IEEE Trans Antenn Propag, 60(3):1521-1531.
[37]Zhang Y, Zhang XY, Ye LH, et al., 2016. Dual-band base station array using filtering antenna elements for mutual coupling suppression. IEEE Trans Antenn Propag, 64(8): 3423-3430.
[38]Zhao LY, Wu KL, 2014. A decoupling technique for four- element symmetric arrays with reactively loaded dummy elements. IEEE Trans Antenn Propag, 62(8):4416-4421.
[39]Zhao LY, Wu KL, 2015. A dual-band coupled resonator decoupling network for two coupled antennas. IEEE Trans Antenn Propag, 63(7):2843-2850.
[40]Zhao LY, Yeung LK, Wu KL, 2014. A coupled resonator decoupling network for two-element compact antenna arrays in mobile terminals. IEEE Trans Antenn Propag, 62(5):2767-2776.
[41]Zhao X, Yeo SP, Ong LC, 2018. Decoupling of inverted-F antennas with high-order modes of ground plane for 5G mobile MIMO platform. IEEE Trans Antenn Propag, 66(9):4485-4495.
[42]Zhu YF, Chen YK, Yang SW, 2019. Decoupling and low-profile design of dual-band dual-polarized base station antennas using frequency-selective surface. IEEE Trans Antenn Propag, 67(8):5272-5281.
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