A new flexible ultrawideband (UWB) antenna is presented for wearable applications in the 3.7-10.3 GHz band, which is highly tolerant to human body loading and physical …
A new approach to realize robust, flexible, and electronically tunable wearable antennas is presented. Conductive fabric is used to form the conducting parts of the antenna on a …
X Tian, Q Zeng, D Nikolayev… - IEEE Transactions on …, 2020 - ieeexplore.ieee.org
Wireless technologies are essential components of wearable devices for applications ranging from connected healthcare to human-machine interfaces. Their performance …
In this study, an ultra-wideband low-specific absorption rate (SAR) flexible metasurface- enabled wearable antenna is proposed for wireless body area network applications. The …
E Cil, S Dumanli - IEEE Access, 2020 - ieeexplore.ieee.org
A novel pattern and polarization reconfigurable wearable slot antenna suitable for smart glasses is proposed. The antenna is designed and fabricated on glass and reconfiguration …
Due to progress in the development of communication systems, it is now possible to develop low-cost wearable communication systems. A wearable antenna is meant to be a part of the …
S Meghana, GS Karthikeya, BK Sujatha… - Prog. Electromagn. Res …, 2022 - jpier.org
In this paper, a textile based fractal monopole antenna is proposed with a defected ground structure for wearable application. The proposed antenna is designed on Flannel fabric with …
This paper presents an ultra wideband antenna using graphene as a conductive patch. In order to provide flexibility, the cotton fabric is used as a substrate. The proposed antenna …