| Literature DB >> 32326120 |
Muhammad Irshad Khan1, Muhammad Irfan Khattak1, Saeed Ur Rahman2, Abdul Baseer Qazi3, Ahmad Abdeltawab Telba4, Abdelrazik Sebak5.
Abstract
This paper proposes a compact, semi-circular shaped multiple input multiple output (MIMO) antenna design with high isolation and enhanced bandwidth for ultrawide band (UWB) applications. A decoupling stub is used for high isolation reaching up to -55 dB over the entire bandwidth. The proposed antenna is used for UWB as well as super wide band (SWB) applications. The overall size of the proposed antenna is 18 × 36 × 1.6 mm3. The | S 11 | and voltage standing wave ratio (VSWR) of the proposed antenna are less than -10 dB and 2, respectively, in the range of 3-40 GHz. The total impedance bandwidth of the proposed design is 37 GHz. The VSWR, | S 11 | , | S 22 | , | S 21 | , | S 12 | , gain, envelope correlation coefficient (ECC), radiation pattern, and various other characteristic parameters are discussed in detail. The proposed antenna is optimized and simulated in a computer simulation technology (CST) studio, and printed on a FR4 substrate.Entities:
Keywords: S11; Ultrawide band; envelope correlation coefficient; gain; impedance bandwidth; multiple input multiple output; super wide band; voltage standing wave ratio
Year: 2020 PMID: 32326120 PMCID: PMC7231326 DOI: 10.3390/mi11040432
Source DB: PubMed Journal: Micromachines (Basel) ISSN: 2072-666X Impact factor: 2.891
Comparison between previously presented MIMO antennas with proposed antennas.
| Ref. | Year | Size (mm × mm) | Resonance Freq: Range (GHz) | BW:1 | % BW | BDR |
|---|---|---|---|---|---|---|
| [ | 2009 |
| 3.1–5 | 1.61 | 47 | 264.36 |
| [ | 2011 |
| 3.2–10.6 | 3.31 | 107.24 | 346.52 |
| [ | 2018 |
| 2.5–14.5 | 5.8 | 141.17 | 1355.23 |
| [ | 2013 |
| 3.1–10.6 | 3.41 | 109.50 | 808.11 |
| [ | 2019 |
| 4.5–8 | 1.78 | 56 | 77.77 |
| [ | 2016 |
| 2.9–12 | 4.13 | 122.14 | 1621.69 |
| [ | 2018 |
| 2.9–12 | 4.13 | 122.14 | 1916.55 |
| [ | 2017 |
| 3.1–11 | 3.54 | 112 | 655.56 |
| [ | 2015 |
| 3.1–12.3 | 3.96 | 119.5 | 782.62 |
| [ | 2019 |
| 2.9–10.8 | 3.72 | 115.32 | 1695.19 |
| [ | 2018 |
| 2.2–10.8 | 4.8 | 141 | 2759.89 |
| [ | 2016 |
| 3.1–10.65 | 3.43 | 109.89 | 432.41 |
| [ | 2015 |
| 3.1–11 | 3.54 | 112 | 1324.37 |
| [ | 2017 |
| 3.08–10.98 | 3.56 | 112.37 | 1184.53 |
| [ | 2019 |
| 3.1–12.5 | 4.03 | 120.51 | 1469.53 |
| [ | 2019 |
| 3.1–11 | 3.54 | 112 | 1542.51 |
| [ | 2019 |
| 3.62–9.35 | 2.58 | 88.35 | 849.83 |
| [ | 2019 |
| 3.01–12.5 | 4.15 | 122.37 | 750.35 |
| Proposed | 2020 |
| 3–40 | 13.33 | 172.1 | 2655.86 |
Figure 1Design of MIMO antenna for SWB application. (a) Front view and (b) back view.
Figure 2Simulated parameters of MIMO antenna for SWB applications.
Parameters of proposed MIMO-UWB antenna.
| Parameter | Value (mm) | Parameter | Value (mm) |
|---|---|---|---|
|
| 36 |
| 4.4 |
|
| 18 |
| 3.5 |
|
| 5.7 |
| 2 |
|
| 3.6 |
| 9.5 |
|
| 4.5 |
| 21.5 |
|
| 1.2 |
| 1 |
|
| 6 |
| 1.4 |
Figure 3Design evaluation of decoupling stub in proposed MIMO antenna. (a) MIMO Ant1; (b) MIMO Ant2; and (c) MIMO Ant3.
Figure 4Parameters of design evaluation steps of decoupling stub.
Figure 5Surface current distribution of proposed MIMO antenna at (a) 5 GHz with decoupling stub (b) 5 GHz without decoupling stub (c) 10 GHz with decoupling stub (d) 10 GHz without decoupling stub (e) 15 GHz with decoupling stub (f) 15 GHz without decoupling stub.
Figure 6Fabricated design of proposed design. (a) Front view and (b) back view.
Figure 7Measured and simulated parameters of proposed MIMO antenna.
Figure 8Measured and simulated radiation patterns (a) 3.3 GHz; (b) 5.5 GHz; and (c) 8 GHz.
Figure 9ECC and diversity gain of proposed antenna.
Figure 10Multiplexing efficiency and peak gain of proposed MIMO antenna.