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Updated: Jan 19, 2026

Demonstration of Equal-Intensity Beam Generation by Dielectric Metasurfaces
Published on: June 7, 2019
Wideband tilted beam end-fire antenna using double semi-circular rings
Amitkumar Patel1, Chinthana Panagamuwa2, William Whittow2
1Wolfson School of Mechanical, Electrical and Manufacturing Engineering, Loughborough University, Loughborough, LE11 3TU, UK. a.patel2@lboro.ac.uk.
This study introduces a novel wideband planar antenna for 5G millimeter-wave applications. The antenna achieves high gain and wide bandwidth, making it suitable for future high-data-rate wireless systems.
Area of Science:
- Electrical Engineering
- Antenna Theory
- Wireless Communications
Background:
- Microwave and millimeter-wave (mmWave) frequencies are crucial for next-generation wireless systems.
- Existing antenna designs often face limitations in bandwidth and gain for these applications.
Purpose of the Study:
- To present a novel wideband (WB) tilted-beam end-fire planar antenna.
- To address the need for high-performance antennas in 5G New Radio (NR) mmWave bands and unlicensed 60 GHz bands.
Main Methods:
- The antenna design features a microstrip fed double semi-circular rings over a curvilinear slotted ground plane.
- Impedance matching was achieved over a broad frequency range (11.5 to 62.5 GHz).
- Full-wave simulations and prototype fabrication were used for characterization.
Main Results:
- The antenna operates from 11.5 to 62.5 GHz, covering 5G NR mmWave bands (n257, n258, n260, n261) and the 60 GHz band.
- It demonstrates a return loss better than 12 dB and a gain exceeding 6.5 dBi across the band, with a peak gain of 11.6 dBi.
- End-fire radiation with a tilted beam was achieved within the 24-40 GHz range (50% fractional bandwidth).
Conclusions:
- The fabricated antenna prototype's measured results align well with simulations.
- The proposed antenna offers a compact planar geometry, wide bandwidth, and high gain.
- It is identified as a strong candidate for future high-data-rate wireless communication systems.
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