| Literature DB >> 34068817 |
Rong Yang1, Shuqi Xi1, Qibo Cai1, Zhizhou Chen1, Xiaohang Wang2, Gui Liu1.
Abstract
In this paper, a compact planar dual-band multiple-input and multiple-output (MIMO) antenna with high isolation is presented to satisfy the increasing requirements of wireless communication. The proposed antenna array consists of two identical radiating elements which are fed through micro-strip lines. A rectangular micro-strip stub with defected ground plane is employed to achieve a high isolation which is less than -15 dB between the two antenna elements. The size of the entire MIMO antenna is 32 × 32 × 1.59 mm3, which is printed on an FR4 substrate. The proposed MIMO antenna is optimized to operate in 2.36-2.59 GHz and 3.17-3.77 GHz bands, which can cover the fifth-generation (5G) n7 (2.5-2.57 GHz) and the fourth-generation (4G) Long Term Evolution (LTE) band 42 (3.4-3.6 GHz). The proposed MIMO antenna is feasible for the 5G and 4G applications.Entities:
Keywords: 4G; 5G; dual-band antenna; multiple-input multiple-output (MIMO)
Year: 2021 PMID: 34068817 PMCID: PMC8151955 DOI: 10.3390/mi12050544
Source DB: PubMed Journal: Micromachines (Basel) ISSN: 2072-666X Impact factor: 2.891
Figure 1Configuration of the proposed antenna (a) top view; (b) bottom view.
Figure 2Photograph of the fabricated antenna prototype (a) top view; (b) bottom view.
Figure 3Surface current distributions at (a) 2.475 GHz; (b) 3.47 GHz.
Figure 4Simulated reflection coefficients for different values of (a) W3; (b) W2; (c) L4.
Dimensions of the proposed antenna (unit: mm).
| Parameters | Value | Parameters | Value | Parameters | Value |
|---|---|---|---|---|---|
| L1 | 32 | L8 | 5.5 | L15 | 20 |
| L2 | 12 | L9 | 14 | W1 | 32 |
| L3 | 9.7 | L10 | 6 | W2 | 0.5 |
| L4 | 8 | L11 | 12 | W3 | 1 |
| L5 | 11.3 | L12 | 5.3 | W4 | 2 |
| L6 | 6 | L13 | 12 | W5 | 1 |
| L7 | 3 | L14 | 32 |
Figure 5Simulated and measured S11 of the proposed antenna.
Figure 6Simulated and measured S21 of the proposed antenna.
Figure 7Measured radiation patterns of the proposed antenna (a) 2.475 GHz E-plane; (b) 2.475 GHz H-plane; (c) 3.47 GHz E-plane; and (d) 3.47 GHz H-plane.
Figure 8Measured antenna peak gain and total efficiency.
Figure 9Simulated envelope correlation coefficient (ECC) of the multiple-input and multiple-output (MIMO) antenna.
Comparison of the proposed antenna with other referenced antennas.
| Ref. | Center Frequency (GHz) | Peak Gain (dBi) | Isolation (dB) | ECC | Total Efficiency (%) | Size (mm2) |
|---|---|---|---|---|---|---|
| [ | 3.5 | - | >17.5 | <0.05 | 76 | 150 × 80 |
| [ | 5.8 | 6 | >17 | <0.05 | 80 | 50 × 80 |
| [ | 3.6 | 4.3 | >12 | <0.03 | 73 | 80 × 40 |
| [ | 2.44 and 5.5 | 2.3 | >15 | - | 46 | 40 × 40 |
| [ | 2.45 and 5.5 | 4.5 | >17.8 | <0.011 | 65.9 | 50 × 50 |
| This work | 2.475 and 3.47 | 5.9 | >15 | <0.02 | 81 | 32 × 32 |