A wideband beam steering transmitarray antenna for Ka-band applications

IF 3 3区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Aeu-International Journal of Electronics and Communications Pub Date : 2025-02-18 DOI:10.1016/j.aeue.2025.155720
Peyman PourMohammadi , Hassan Naseri , Noureddine Melouki , Fahad Ahmed , Qi Zheng , Amjad Iqbal , Tayeb A. Denidni
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Abstract

In this paper, a broadband transmitarray antenna is designed to achieve beamsteering ability with high aperture efficiency for 5G communication systems. To this end, at first an innovative unit cell is designed based on constructive mutual coupling with 1-bit phase quantization (0°/180°), utilizing the current reverse technique. The proposed unit cell includes a modified patch array on top of the upper substrate (Tx) and two modified patch arrays on the bottom of the lower substrate (Rx). A metalized via-hole connects both layers. The results illustrate low insertion loss, consistently preserved across all phase configurations, alongside a broad 3-dB transmission bandwidth spanning from 25.82 GHz to 38.57 GHz (12.75 GHz). This is because the intensity of the current distribution varies across frequencies in the proposed unit cell. By combining these varying amplitudes across frequencies, the design achieves a wider bandwidth (BW). Next, a transmit array antenna is constructed using the proposed unit cell to confirm the beam-forming principle. The results indicate accurate beam steering to the intended angles with decent sidelobe levels, accompanied by an antenna gain increase of 12.22 dBi over its feed, reaching 25.52 dBi at 28 GHz. This significant gain results in an aperture efficiency of 41.6%. Besides, the −3 dB gain ranges from 26.8 to 36.1 GHz (9.3 GHz), corresponding to a bandwidth of 33.3% at the center frequency of 28 GHz. This enhancement stems from incorporating two unit cells in one unit cell, half-elliptical and rectangular-shaped patches, forming an array. To the best of the authors’ knowledge, the proposed transmitarray antenna outperforms existing designs in terms of −3 dB gain bandwidth and aperture efficiency, representing a substantial contribution to the field of 5G antenna technologies.
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来源期刊
CiteScore
6.90
自引率
18.80%
发文量
292
审稿时长
4.9 months
期刊介绍: AEÜ is an international scientific journal which publishes both original works and invited tutorials. The journal''s scope covers all aspects of theory and design of circuits, systems and devices for electronics, signal processing, and communication, including: signal and system theory, digital signal processing network theory and circuit design information theory, communication theory and techniques, modulation, source and channel coding switching theory and techniques, communication protocols optical communications microwave theory and techniques, radar, sonar antennas, wave propagation AEÜ publishes full papers and letters with very short turn around time but a high standard review process. Review cycles are typically finished within twelve weeks by application of modern electronic communication facilities.
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Analysis and design of concurrent class-F2 power amplifier based on power-series technique Sequences design using orthogonal polynomials to mitigate side-lobes for MIMO radar and SAR imaging application Maximizing secure communication in SWIPT-NOMA with SIC and CSI errors Editorial Board A wideband beam steering transmitarray antenna for Ka-band applications
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