A pattern reconfigurable wearable antenna is designed based on a metamaterial structure. By reconfiguring the dispersion curve of the transmission line, the patch antenna can resonate at the zeroth-order mode or the +1 mode, yielding a broadside or an omnidirectional radiation pattern, respectively. The antenna is fabricated with textile material targeting wearable applications. The impedance bandwidth covers the 2.4 GHz industrial, scientific and medical (ISM) band in both operating states. The antenna is also simulated on a human tissue model, illustrating that the specific absorption rate (SAR) is well below the European standard threshold. The bending configurations are also discussed for the proposed antenna.status: publishe
International audienceThis paper presents a new wearable antenna designed for Wireless Local Area Ne...
This paper presents the design of a dual-band wearable planar slotted dipole integrated with a metas...
This article presents the design of a miniaturized wearable patch antenna to be utilized for the bod...
This paper proposes a pattern reconfigurable wearable antenna based on a composite right/left-handed...
Body-worn communication devices have attracted much attention due to their wide applications. In thi...
A dual-band textile antenna loaded with metamaterials is proposed and analyzed. By introducing a com...
In this study, design and characterization of a wearable monopole antenna and metamaterial based ele...
This paper presents a microstrip antenna based on metamaterials (MTM). The proposed antenna showed s...
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...
This letter presents a wearable flexible reconfigurable folded slot antenna. The antenna is composed...
In this article, the design of an efficient wireless power transfer (WPT) system using antenna-based...
Wearable antennas work in close proximity to the human body and so suffer from frequency shift due t...
In this study, an ultra-wideband low-specific absorption rate (SAR) flexible metasurface-enabled wea...
International audienceThis paper presents a new wearable antenna designed for Wireless Local Area Ne...
This paper presents the design of a dual-band wearable planar slotted dipole integrated with a metas...
This article presents the design of a miniaturized wearable patch antenna to be utilized for the bod...
This paper proposes a pattern reconfigurable wearable antenna based on a composite right/left-handed...
Body-worn communication devices have attracted much attention due to their wide applications. In thi...
A dual-band textile antenna loaded with metamaterials is proposed and analyzed. By introducing a com...
In this study, design and characterization of a wearable monopole antenna and metamaterial based ele...
This paper presents a microstrip antenna based on metamaterials (MTM). The proposed antenna showed s...
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...
This letter presents a wearable flexible reconfigurable folded slot antenna. The antenna is composed...
In this article, the design of an efficient wireless power transfer (WPT) system using antenna-based...
Wearable antennas work in close proximity to the human body and so suffer from frequency shift due t...
In this study, an ultra-wideband low-specific absorption rate (SAR) flexible metasurface-enabled wea...
International audienceThis paper presents a new wearable antenna designed for Wireless Local Area Ne...
This paper presents the design of a dual-band wearable planar slotted dipole integrated with a metas...
This article presents the design of a miniaturized wearable patch antenna to be utilized for the bod...