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February 13, 2026International Journal of Communication Systems0 citations

Design of Single‐Band Inset‐Fed Patch Antenna 2 × 2 Array Structure With Triangular Dumbbell‐Shaped DGS for 5G Midband at Mobile Broadband Wireless Applications

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MCM. ChandrasekharKNKetavath Kumar Naik

Key Points

  • The study aims to design a 2×2 patch antenna array with a defected ground structure to enhance performance for 5G applications.
  • Designed a linearly polarized patch antenna array with microstrip inset feeding.
  • Incorporated a dumbbell-shaped defected ground structure in a triangular design.
  • Analyzed antenna performance using HFSS and validated through fabrication and measurements.
  • Achieved a reflection coefficient better than -10 dB across the target frequency band.
  • Established an impedance bandwidth of 25.09%.
  • Demonstrated a peak gain of approximately 13.08 dBi within the operating frequency range.

Abstract

ABSTRACT This paper presents a linearly polarized, ground‐defected 2 × 2 rectangular patch antenna array with microstrip inset feeding. A simple structure is realized by placing the rectangular patches and the feeding network on the same layer. The proposed microstrip inset‐fed configuration facilitates proper impedance matching and easy array formation. This work provides an in‐depth examination of the antenna array's characteristics and performance. The antenna array is fabricated on an RT Duroid substrate and integrates a dumbbell‐shaped defected ground structure (DGS) in a triangular form with four radiating elements. The primary objective of incorporating the DGS is to improve the return loss. The proposed compact antenna array has overall dimensions of 106.3 × 112 × 1.575 mm 3 and is intended for wireless communication applications. The designed array operates over the desired frequency band of 3.52–3.61 GHz, achieving a reflection coefficient better than −10 dB and an impedance bandwidth of 25.09%. The antenna exhibits stable radiation characteristics with a peak gain of approximately 13.08 dBi across the operating band. The array is analyzed using HFSS, and fabrication and measurements are carried out to validate the simulated results. The measured outcomes show good agreement with the simulations, demonstrating the suitability of the proposed antenna for 5G midband mobile broadband wireless communication applications.

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Cite This Study

Chandrasekhar et al. (2026) studied this question.

synapsesocial.com/papers/698ebf3485a1ff6a93016603https://doi.org/10.1002/dac.70428
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Circular Patch 1 × 2 Active Antenna Array for 5G Applications2026
  2. 2Design of a Rectangular Linear Microstrip Patch Antenna Array for 5G Communication2024
  3. 3Design of Y-shaped tri-band rectangular slot DGS patch antenna at sub-6 GHz frequency range for 5G communication2024 · 5 citations
  4. 4Compact Microstrip Patch Antenna with Rectangular DGS for Wi-Fi Applications2025
  5. 5Ultrawide band High Gain Inset Feed Simple Structure in Patch Antenna for Sub 6-Ghz Application2024