2026· EPJ Web of Conferences· Vol 380, pp. 01005· 0 citations· 3 references
TL;DR
A compact dual-band Multiple-Input Multiple-Output (MIMO) antenna array comprising eight elements is reported for deployment in 5G handheld terminals, confirming suitability for spatial-multiplexing operation in next-generation mobile devices.
Abstract
A compact dual-band Multiple-Input Multiple-Output (MIMO) antenna array comprising eight elements is reported for deployment in 5G handheld terminals. The array simultaneously addresses the n78 band (3.4-3.8 GHz) and the n258 millimeter-wave band (24.5–27.5 GHz), realizing both operating ranges within a single-layer substrate whose overall dimensions are compatible with contemporary smartphone form factors. Each radiating element combines a T-shaped primary branch with two asymmetric C-shaped resonators, a topology that produces independent resonances at the two target bands. Interelement isolation is enhanced through the joint action of defected ground structures (DGS) and a passive neutralization line (NL), which together raise the minimum isolation from approximately 11 dB to 18 dB across the full bandwidth. Cross-validation by CST Microwave Studio and ANSYS HFSS confirms realized gains of 5.7 dBi at 3.6 GHz and 6.4 dBi at 26 GHz, total radiation efficiency in the 85–94 % range, and envelope correlation coefficients (ECC) below 0.04—all confirming suitability for spatial-multiplexing operation in next-generation mobile devices.
A novel quad-port multiple-input multiple-output (MIMO) antenna with enhanced isolation is proposed by incorporating a specifically designed hybrid defected ground structure (DGS) for dual band 5G mmWave wireless applications. This suggested MIMO antenna system features a distinctive DGS, consisting of a central circul...
M. Bendaoued, A. Es-saleh, S. Lakrit et al.· PLoS ONE· 0 citations
A compact and low-cost multiple-input multiple-output (MIMO) antenna system is proposed to meet the demands of modern portable wireless communication devices. The antenna is manufactured on an FR4 substrate measuring 10 × 60 × 0.8 mm
3
and operates efficiently in the LTE, Sub-6 GHz, and Wi-Fi 6E/7 bands. In parti...
Ming-An Chung, Wei-Hsun Yang, Jun-Hao Zhang et al.· International journal of mic...· 0 citations
A four-element multiple-input multiple-out (MIMO) antenna employing a metamaterial (MMT)-based structure is presented for sub-6 GHz wireless applications. The antenna is fabricated on an FR4 substrate and operates over the 5.7–5.9 GHz band, centred at 5.8 GHz. The overall antenna size is 46 × 44 × 1.6 mm3 (0.89λ0 × 0.8...
R. Julia Karal Adisaya, D. David, M. Nesasudha· Engineering Research Express· 0 citations
This paper presents a compact dual-band circularly polarized two-port MIMO antenna for millimeter-wave applications at 28 and 38 GHz. The single-element antenna occupies an ultra-small area of 8 mm × 16 mm and is fabricated on a Rogers RO3003 substrate (εr = 3, thickness = 0.25 mm). Circular polarization is achieved at...
A. Farahat, K. Hussein· Scientific Reports· 0 citations
The 5G NR sub-6 GHz bands n77 (3.3–4.2 GHz) and n78 (3.3–3.8 GHz) are widely used for modern 5G communication systems due to their balanced coverage and capacity. This work presents a compact wideband four-port MIMO antenna employing orthogonal diversity and defected ground structure (DGS) techniques for 5G sub-6 GHz...
K. C. Rao, Ramana Pilla, Upendra Kumar Potnuru et al.· Discover Applied Sciences· 0 citations
A compact circularly polarized antenna optimized for broadband operation around the 28-GHz band is proposed, utilizing a ring-shaped radiator excited through a via-fed central patch which enables strong impedance matching and stable circular polarization.
A. Althuwayb, Sang-Min Lee, E. M. Ali et al.· Scientific Reports· 0 citations
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