A miniaturized wearable antenna, entirely implemented in textile materials, is proposed that relies on a quarter-mode substrate integrated waveguide topology. The design combines compact dimensions with high body-antenna isolation, making it excellently suited for off-body communication in wearable electronics/smart textile applications. The fabricated antenna achieves stable on-body performance. A measured on-body impedance matching bandwidth of 5.1% is obtained, versus 4.8% in free space. The antenna gain equals 3.8 dBi in the on-body and 4.2 dBi for the free-space scenario. High radiation efficiency, measured to be 81% in free space, is combined with a low calculated specific absorption rate of 0.45 mW/g, averaged over 1 g of tissue, wit...
© 2021 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Textile-based miniaturized antennas (20×26×1mm3)are designed and analyzed for wearableC-band applica...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...
A miniaturized wearable antenna, entirely implemented in textile materials, is proposed that relies ...
A compact, robust, wearable antenna for body-worn applications in the 2.4 GHz Industrial Medical and...
A compact, robust, wearable antenna for body-worn applications in the 2.4 GHz Industrial Medical and...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...
Textile antennas for body-worn applications have some very specific requirements and needs. From an ...
Textile antennas for body-worn applications have some very specific requirements and needs. From an ...
A novel wearable dual-band textile antenna, designed for optimal on-body performance in the 2.4 and ...
A novel wearable dual-band textile antenna, designed for optimal on-body performance in the 2.4 and ...
A novel wearable substrate integrated waveguide antenna fabricated entirely from textile materials i...
Researchers at Katholieke Universiteit Leuven and Universiti Malaysia Perlis are the first to have d...
A novel wearable substrate integrated waveguide antenna fabricated entirely from textile materials i...
© 2021 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Textile-based miniaturized antennas (20×26×1mm3)are designed and analyzed for wearableC-band applica...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...
A miniaturized wearable antenna, entirely implemented in textile materials, is proposed that relies ...
A compact, robust, wearable antenna for body-worn applications in the 2.4 GHz Industrial Medical and...
A compact, robust, wearable antenna for body-worn applications in the 2.4 GHz Industrial Medical and...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...
Textile antennas for body-worn applications have some very specific requirements and needs. From an ...
Textile antennas for body-worn applications have some very specific requirements and needs. From an ...
A novel wearable dual-band textile antenna, designed for optimal on-body performance in the 2.4 and ...
A novel wearable dual-band textile antenna, designed for optimal on-body performance in the 2.4 and ...
A novel wearable substrate integrated waveguide antenna fabricated entirely from textile materials i...
Researchers at Katholieke Universiteit Leuven and Universiti Malaysia Perlis are the first to have d...
A novel wearable substrate integrated waveguide antenna fabricated entirely from textile materials i...
© 2021 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
Textile-based miniaturized antennas (20×26×1mm3)are designed and analyzed for wearableC-band applica...
The Quarter-Mode Substrate Integrated Waveguide technology is applied in textile materials to obtain...