ScreenAnt

Transparent On-Screen Antennas for 6G

Conference Paper (2026)
Author(s)

Shun Zhuge (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Qing Wang (TU Delft - Electrical Engineering, Mathematics and Computer Science)

Research Group
Embedded Systems
DOI related publication
https://doi.org/10.1109/ICC59461.2026.11587877 Final published version
More Info
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Publication Year
2026
Language
English
Research Group
Embedded Systems
Publisher
IEEE
ISBN (electronic)
9798319542090
Event
2026 IEEE International Conference on Communications, ICC 2026 (2026-05-24 - 2026-05-28), Glasgow, United Kingdom
Page Views
8
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Abstract

6G will require on-device antenna systems to operate at ultra-high frequency bands, achieve robust beamforming on the compact user devices, and be blockage-robust. Conventional edge-mounted antennas on devices have limited apertures, suffer from the 'death grip' caused by user-induced blockage, and have poor scalability at mmWave and sub-THz bands. To address these issues, motivated by the rapid evolution of transparent materials and antennas, we propose ScreenAnt in this work - which integrates a transparent antenna array onto the screens of future mobile devices. Specifically, we propose using a transparent on-screen uniform planar array and develop a framework to model its electromagnetic property, spatial configuration, and blockage robustness under realistic user-induced blockage. We also design a gradient-ascent-based algorithm to efficiently optimize power and phase control of on-screen antennas to maximize ScreenAnt's spectral efficiency. Our thorough simulations show that the proposed ScreenAnt can increase the uplink spectral efficiency by over 50% compared to edge-mounted antennas at 28 GHz, and by more than 150% at 300 GHz. ScreenAnt also demonstrates strong robustness against user-induced blockage, paving the way for practical and high-capacity 6G user device designs.

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