Research Article | Open Access | Download PDF
Volume 74 | Issue 9 | Year 2026 | Article Id. IJETT-V74I9P135 | DOI : https://doi.org/10.14445/22315381/IJETT-V74I9P135Design and Analysis of a Hexagonal Patch Antenna with Integrated Metasurface for Satellite Applications
V Gnanalakshmi, S Asha, G Sowmiyadevi
| Received | Revised | Accepted | Published |
|---|---|---|---|
| 22 Apr 2026 | 17 Aug 2026 | 26 Aug 2026 | 30 Sep 2026 |
Citation :
V Gnanalakshmi, S Asha, G Sowmiyadevi, "Design and Analysis of a Hexagonal Patch Antenna with Integrated Metasurface for Satellite Applications," International Journal of Engineering Trends and Technology (IJETT), vol. 74, no. 9, pp. 501-508, 2026. Crossref, https://doi.org/10.14445/22315381/IJETT-V74I9P135
Abstract
In this paper, the design, simulation, and analysis of a novel hexagonal patch antenna operating at a frequency of 10.5 GHz are proposed. The hexagonal shape of the patch is chosen for its unique geometric properties, providing improved radiation characteristics and enhanced bandwidth. The proposed antenna leverages slot characteristics to improve performance and is implemented on a cost-effective FR4 substrate. Integrating slots in the hexagonal patch structure is explored to achieve enhanced impedance matching, gain, and radiation efficiency. A unit cell metasurface is introduced on the substrate, enhancing the antenna's capabilities. The proposed antenna is analyzed using HFSS 2020 R2 software. The antenna is operational with a return loss of -31dB at 10.5 GHz, and it offers a gain of 5.3 dB with an ECC of 0.03 and a diversity gain of 9.99. The size of the proposed antenna is 26 x 19 mm, which was fabricated and tested successfully. The distinctive combination of hexagonal geometry, slot characteristics, and the FR4 substrate presents a versatile and adaptable solution, making it suitable for satellite applications.
Keywords
FR4 Substrate, Hexagonal Slot Antenna, Metasurface, Satellite Communication Systems.
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for Satellite Down-Link Applications,” IEEE Access, vol. 10, pp.
35965-35976, 2022.
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Antenna with High Isolation,” Sensors, vol. 21, no. 8, pp. 1-12, 2021.
[CrossRef] [Google Scholar] [Publisher
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Satellite: A Review,” IEEE Communications Surveys and Tutorials, vol.
13, no. 1, pp. 27-51, 2011.
[CrossRef] [Google Scholar] [Publisher
Link]
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Microstrip Patch Antenna Design for 2.45 GHz WLAN System,” 2021 6th
International Conference on Inventive Computation Technologies (ICICT), Coimbatore, India, pp. 13-18, 2021.
[CrossRef] [Google Scholar] [Publisher
Link]
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High-Aperture-Efficiency Hexagonal Circularly Polarized Microstrip Antenna
Array,” IEEE Antennas and Wireless Propagation Letters, vol. 21, no. 3,
pp. 615-619, 2022.
[CrossRef] [Google Scholar] [Publisher
Link]
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Reflectarray Antenna using Hexagonal Lattice with Enhanced Beam Steering Capability,”
IEEE Access, vol. 7, pp. 45526-45532, 2019.
[CrossRef] [Google Scholar] [Publisher
Link]
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X-Band Horn Antenna with a Metamaterial Lens using 3D Printing Technology,” IEEE
Access, vol. 12, pp. 17773-17781, 2024.
[CrossRef] [Google Scholar] [Publisher
Link]
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Metasurface Corrugations for 28 GHz MIMO Applications,” IEEE Antennas and
Wireless Propagation Letters, vol. 16, pp. 2763-2766, 2017.
[CrossRef] [Google Scholar] [Publisher
Link]
[10] Oludayo Sokunbi et al., “New Self-Isolated Wideband
MIMO Antenna System for 5G mm-Wave Applications using Slot Characteristics,” IEEE
Open Journal of Antennas and Propagation, vol. 4, pp. 81-90, 2023.
[CrossRef] [Google Scholar] [Publisher
Link]
[11] Daasari Surender, Taimoor Khan, and Fazal Ahmed
Talukdar, “A Hexagonal-Shaped Microstrip Patch Antenna with Notch Included
Partial Ground Plane for 2.45 GHz Wi-Fi Band RF Energy Harvesting Applications,”
2020 7th International Conference on Signal Processing and
Integrated Networks (SPIN), Noida, India, pp. 966-969, 2020.
[CrossRef] [Google Scholar] [Publisher
Link]
[12] Hamid M.Q. Rasheda et al., “An Optimization of Fractal
Microstrip Patch Antenna with Partial Ground using Genetic Algorithm Method,” 2021
International Congress of Advanced Technology and Engineering (ICOTEN), Taiz, Yemen, pp. 1-6, 2021.
[CrossRef] [Google Scholar] [Publisher
Link]
[13] Chandan Kumar Ghosh et al., “Slotted Microstrip
Antenna for Miniaturization,” 2020 National Conference on Emerging Trends on
Sustainable Technology and Engineering Applications (NCETSTEA, Durgapur, India, pp. 1-4, 2020.
[CrossRef] [Google Scholar] [Publisher
Link]
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MIMO Array using Balanced Open-Slot Antenna Element for 5G Smartphones,” IEEE
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2019.
[CrossRef] [Google Scholar] [Publisher
Link]
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Antenna with Compact Decoupled Antenna Pairs for 5G Mobile Terminals,” IEEE
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2019.
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