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Publishing Language: Chinese

Miniaturized, wideband and high isolation compact MIMO antenna

Yan WANG1Li’an BIAN1( )Shu XIE1Qi ZHANG1Gaosheng LI2
School of Physical and Electronic Sciences, Changsha University of Science and Technology, Changsha 410114, China
School of Electrical and Information Engineering, Hunan University, Changsha 410082, China
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Abstract

Objective

In order to solve the installation space limitations of shipboard communication devices and the low communication efficiency of shipborne antennas due to interference by signals from other equipment, this paper proposes a miniaturized and high-isolation compact MIMO antenna that can cover a wide frequency band.

Method

The antenna unit is based on an elliptical patch that expands into the final octagonal structure by rotational translation; the four units are placed orthogonally on the dielectric substrate to improve the data transmission rate and channel capacity of the antenna; and adding a square metal patch to the back of the antenna improves the isolation between antenna units, while the overall size of the antenna is only 32 mm×32 mm×1.6 mm.

Results

The results show that the impedance bandwidth of S11 ≤ −10 dB is measured as 3.4−10 GHz; the S31 of the antenna drops from about −15 dB to less than −22 dB with a lowest point of −46 dB, improving isolation by 31 dB; and the antenna envelope correlation coefficient is less than 0.05, the diversity gain is greater than 9.7 dB and the highest gain of the antenna can reach 4.5 dBi.

Conclusion

On the basis of miniaturization, the MIMO antenna can cover a wide frequency band and has a high degree of isolation, strong anti-interference ability and high channel capacity, enabling it to be widely used in shipborne wireless communication equipment.

CLC number: U665.26 Document code: A

References

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Chinese Journal of Ship Research
Pages 265-274

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Cite this article:
WANG Y, BIAN L, XIE S, et al. Miniaturized, wideband and high isolation compact MIMO antenna. Chinese Journal of Ship Research, 2025, 20(3): 265-274. https://doi.org/10.19693/j.issn.1673-3185.03551

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Received: 08 September 2023
Revised: 31 October 2023
Published: 11 March 2024
© 2025 Chinese Journal of Ship Research.