In this work, an embroidered metamaterial monopole antenna based on a split ring resonator electromagnetic bandgap shielding structure is designed, simulated, and tested. This work investigates the impact of different types of embroidering metamaterial patterns on the antenna performance, shielding effect in terms of human safety through specific absorption rate analysis and degree of material wearability, in comparison with the standard antenna topologies. The proposed antenna design presents a full compact embroidered metamaterial device manufactured in felt textile substrate and requires a 85¿×¿70¿mm2 area, operating at 2.45¿GHz. On-voxel analysis reveals that specific absorption standards are satisfied for both public and occupational s...
Worldwide demand of wearable devices is arduous. In field of movable technology ‘hands-free’ status ...
Abstract This paper presents a compact textile antenna design based on a metasurface for wearable a...
A dual-band, wearable metamaterial-loaded antenna is proposed for 2.4/5.2-GHz WLAN applications. The...
In this work, an embroidered metamaterial monopole antenna based on a split ring resonator electroma...
In this study, design and characterization of a wearable monopole antenna and metamaterial based ele...
Body-worn communication devices have attracted much attention due to their wide applications. In thi...
In this work, the design, implementation and test of double ring resonator (DRR) wearable antennas i...
A novel wearable Frequency Selective Surface (FSS) created using fabric materials capable of blockin...
This paper presents a textile antenna designed to be integrated into protective clothing since it is...
A pattern reconfigurable wearable antenna is designed based on a metamaterial structure. By reconfig...
International audienceThis paper presents a new wearable antenna designed for Wireless Local Area Ne...
A dual-band textile antenna loaded with metamaterials is proposed and analyzed. By introducing a com...
In this work, the utilization of different textile materials for manufacturing of metamaterial with ...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
Worldwide demand of wearable devices is arduous. In field of movable technology ‘hands-free’ status ...
Abstract This paper presents a compact textile antenna design based on a metasurface for wearable a...
A dual-band, wearable metamaterial-loaded antenna is proposed for 2.4/5.2-GHz WLAN applications. The...
In this work, an embroidered metamaterial monopole antenna based on a split ring resonator electroma...
In this study, design and characterization of a wearable monopole antenna and metamaterial based ele...
Body-worn communication devices have attracted much attention due to their wide applications. In thi...
In this work, the design, implementation and test of double ring resonator (DRR) wearable antennas i...
A novel wearable Frequency Selective Surface (FSS) created using fabric materials capable of blockin...
This paper presents a textile antenna designed to be integrated into protective clothing since it is...
A pattern reconfigurable wearable antenna is designed based on a metamaterial structure. By reconfig...
International audienceThis paper presents a new wearable antenna designed for Wireless Local Area Ne...
A dual-band textile antenna loaded with metamaterials is proposed and analyzed. By introducing a com...
In this work, the utilization of different textile materials for manufacturing of metamaterial with ...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
In this paper, the utilization of common fabrics for the manufacturing of e-textile metamaterial tra...
Worldwide demand of wearable devices is arduous. In field of movable technology ‘hands-free’ status ...
Abstract This paper presents a compact textile antenna design based on a metasurface for wearable a...
A dual-band, wearable metamaterial-loaded antenna is proposed for 2.4/5.2-GHz WLAN applications. The...