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April 3, 2026Electronics0 citationsOpen Access

High-Isolation Four-Port Wideband MIMO Antenna Array on Polycarbonate for Sub-6 GHz 5G Systems

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PRPaitoon RaklueaCMChatree MahatthanajatuphatNWNorakamon Wongsin

Key Points

  • The research aims to develop a high-isolation four-port wideband MIMO antenna array for sub-6 GHz applications.
  • Fabricated on polycarbonate substrate measuring 500 × 500 mm2
  • Utilizes four orthogonally arranged modified circular patches
  • Impedance bandwidth range of 0.7–7.0 GHz
  • Measurement of inter-port isolation, gain, and reflection coefficients
  • Inter-port isolation exceeds 15 dB across the 0.7–7 GHz band
  • ACHieves a peak isolation of approximately 50 dB over 63.5% of the bandwidth
  • Mean effective gain is around −3 dB
  • Maximum realized gain reaches 10 dBi
  • Consistent group delay of ~0.5 ns

Abstract

This study proposes a high-isolation four-port wideband MIMO antenna array designed for sub-6 GHz 5G, IoT, and radar applications. The array is fabricated on a polycarbonate substrate with overall dimensions of 500 × 500 mm2 (εr = 2.8, h = 1 mm). Four orthogonally arranged modified circular patches with triangular ground planes and optimized inter-element spacing (D1 = 90 mm) are employed in the antenna’s design to achieve an impedance bandwidth of 0.7–7.0 GHz (Fractional Bandwidth (FBW) > 163.63%) with |Sii| < −10 dB across all ports. The measurement results indicate that the inter-port isolation is better than 15 dB (worst-case) across the 0.7–7 GHz band, exceeding 25 dB over 63.5% of the bandwidth (with a peak of approximately 50 dB); the envelope correlation coefficient (ECC) is ultra-low (<0.008); the total active reflection coefficient (TARC) is less than −10 dB for primary multi-port excitations; the mean effective gain (MEG) is balanced (≈−3 dB); and the group delay is consistent (~0.5 ns). With a maximum realized gain of 10 dBi, the antenna exhibits omnidirectional radiation patterns, showing a significant correlation between the simulation (CST Microwave Studio) and measurement results. The proposed antenna is particularly well-suited for use in high-throughput sub-6 GHz 5G base stations and wideband wireless systems, offering superior port isolation through multi-mode resonance without the need for metamaterials and outperforming existing four-port designs.

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Cite This Study

Rakluea et al. (2026) studied this question.

synapsesocial.com/papers/69cf5cd15a333a821460a57ehttps://doi.org/10.3390/electronics15071466
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