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March 28, 2026Scientific Reports0 citationsOpen Access

High gain and slant dual-polarized antenna for private 5G railway base stations

JLJae-Geun LeeYHYoujin HanBAByungKuon Ahn

Key Points

  • The study aims to develop an efficient antenna for Private 5G railway communications that maximizes gain and minimizes polarization issues.
  • Proposes a novel antenna structure with dual-polarization and fan-beam characteristics.
  • Employs higher-order mode patch antenna and sidelobe suppression techniques.
  • Designs a 6 × 1 array antenna to form a stable fan-beam radiation pattern.
  • Uses a 6-way power divider for uniform power distribution.
  • Achieves a high gain of 12.8 dBi for the antenna element and 18.6 dBi for the array.
  • Maintains a horizontal half-power beamwidth of 6° and vertical beamwidth of 38°.
  • Inclusion of a figure-of-merit comparison shows the antenna's balanced performance against existing designs.
  • Demonstrates sufficient bandwidth for the Private 5G band and improved reliability in railway environments.

Abstract

This paper proposes a novel antenna structure that simultaneously satisfies high gain, dual-polarization, and fan-beam radiation pattern characteristics for Private 5G base stations in next-generation railway communications. In Private 5G railway communications, a balance of high gain, dual-polarization, and fan-beam is crucial. High gain and fan-beam pattern maximize coverage along the track, while dual-polarization provides link robustness for high-speed mobility. The proposed antenna element achieves a high gain of 12. 8 dBi and stable radiation performance despite its relatively compact size by employing a radiation mechanism based on a higher-order mode patch antenna and a sidelobe suppression technique utilizing central and side slots. Furthermore, by rotating the antenna by 45^ and configuring it in a slant dual-polarization structure, it provides robustness against polarization variations that frequently occur in practical communication environments. A 6 1 array antenna constructed based on the proposed antenna element forms a stable fan-beam radiation pattern with suppressed grating lobes even at wide array spacing of 1. 27 ₀, providing a horizontal half-power beamwidth (HPBW) of 6^, a vertical HPBW of 38^, and a peak gain of 18. 6 dBi. The 6-way power divider designed for dual-polarization array feeding ensures excellent uniform power distribution with an insertion loss deviation within ± 0. 32 dB and an insertion phase deviation within ± 2. 8^. Both the proposed antenna element and the array antenna achieve sufficient bandwidth coverage for the Private 5G band, demonstrating performance suitable for application in practical base station environments. Moreover, a figure-of-merit comparison defined based on peak gain, fractional bandwidth, and antenna size confirms that the proposed antenna achieves the most balanced performance compared to previously reported high gain dual-polarized antennas. These results indicate that the proposed antenna can provide high reliability for next-generation Private 5G railway base stations and offer significant advantages in terms of coverage, interference mitigation, and link robustness in practical railway operating environments.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/69c771688bbfbc51511e14b1https://doi.org/10.1038/s41598-026-45487-0
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