Abstract
Wireless Body Area Networks (WBANs) are a key application underpinned by advances in electronic textiles (e-textiles). Achieving higher throughput, data-rate, network capacity, and delivering wireless power to miniaturized devices requires WBANs to operate at millimeter-wave 5G+ frequencies. This, however, imposes significant challenges on the antenna design to cope with the additional losses introduced by textile substrates. In this paper, the performance of a novel, high-efficiency, textile-based millimeter-wave antenna is investigated for wireless links with a wearable device. Indoor “real-world” channel gain measurements are used to evaluate the antenna’s performance compared to anechoic gain measurements. Based on the measured channel gain between textile antennas, it is concluded that high-speed wireless links in the 24–30 GHz 5G+ spectrum could be realized with over one meter range using e-textile antennas.
Author supplied keywords
Cite
CITATION STYLE
Wagih, M., Hilton, G. S., Weddell, A. S., & Beeby, S. (2022). 5G-Enabled E-Textiles Based on a Low-Profile Millimeter-Wave Textile Antenna †. Engineering Proceedings, 15(1). https://doi.org/10.3390/engproc2022015013
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.