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Design and characterization of a circular ring monopole antenna and its MIMO configuration for sub-6 GHz, sub-7 GHz and mm-wave 5G applications

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Iriqat, Sanaa

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Iriqat, Sanaa
Yenikaya, Sibel
Seçmen, Mustafa

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Iop Publishing Ltd

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Abstract

In this paper, a circular ring monopole antenna, along with its MIMO configuration for sub-6 GHz, sub-7 GHz and mm-wave 5G applications is presented. The single element spans a wide range of frequencies in the sub-6 GHz and mm-wave regions, including a triple-band covering 1.9-6 GHz, 23.3-33.5 GHz, and a super-wide band starting from 37.5 GHz. A two-element MIMO antenna, derived from the single element, has been developed to operate in both frequency regions. It meets the - 10 dB criterion with a bandwidth of 4.8 GHz ( 3.2 to 7.3 GHz) in the sub-6 GHz/sub-7 GHz spectrum. Additionally, the antenna exhibits a super-wide band in the mm-wave region starting at 30.4 GHz. The design covers key bands such as n78, LTE band 46, n96, 39 GHz band, 41 GHz band and more, assigned for 5G sub-6 GHz, sub-7 GHz and mm-wave applications. Improved isolation from 12 dB to 18.5 dB is achieved through a simple decoupling line structure between elements. The proposed MIMO antenna ( 75 x 56.4 x 1.52 mm3) exhibits a peak gain of 9.8 dBi, high isolation ( 18.5 dB), low envelope correlation coefficient ( ECC < 0.016 ) , high diversity gain ( DG > 9.995), and efficiency (< 97%).

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Monopole, Mimo, 5g, Ring antenna, Mm-wave, Sub-6 GHz, Sub-7 GHz, Physics

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