This manuscript proposes a new design of a millimeter-wave (mm-Wave) array antenna package with beam steering characteristic for the fifth generation (5G) mobile applications. In order to achieve a broad 3D scanning coverage of the space with high-gain beams, three identical sub arrays of patch antennas have been compactly arranged along the edge region of the mobile phone PCB to form the antenna package. By switching the feeding to one of the sub arrays, the desired direction of coverage can be achieved. The proposed design has >10 dB gain in the upper spherical space, good directivity and efficiency, which is suitable for 5G mobile communications. In addition, the impact of user’s hand on the antenna performance has been investigated
The focus of this manuscript was to propose a new phased array antenna design for the fifth generati...
The millimeter-wave 37 –43.5GHz band is proposed to provide the requested multigigabit-per-second (G...
YesThis study aims to introduce a new phased array design with improved radiation properties for fut...
In this study, a new design of multi-layer phased array antenna for millimeter-wave (mm-Wave) fifth ...
The design and performance of mm-wave phased array antenna for 5G mobile broadband communication sys...
The design of a 28 GHz phased array antenna for future fifth generation (5G) mobile-phone applicatio...
An insensitive planar phased array antenna with high efficiency function for 5G applications is intr...
A new design of dual-band antenna array with 3D-coverage beam steering characteristic for millimeter...
An electronically beam-steerable antenna (BSA) is envisioned. The presented BSA is a possible soluti...
A phased-array antenna design for 5G base station applications in the 3.4-3.8 GHz band is presented....
In mobile communications, the research and development for the fifth generation (5G) has gained sign...
5G will support significantly faster mobile broadband speeds and extensive mobile data usage, as wel...
Cellular Communication Technology has evolved over the past 3 decades with each phase bringing with ...
In this paper, a phased array antenna is designed at millimeter-wave frequency bands for future 5G b...
9.10.2020 9:00 – 12:00 via Zoom https://aalto.zoom.us/j/66371586377The massive increase in the numbe...
The focus of this manuscript was to propose a new phased array antenna design for the fifth generati...
The millimeter-wave 37 –43.5GHz band is proposed to provide the requested multigigabit-per-second (G...
YesThis study aims to introduce a new phased array design with improved radiation properties for fut...
In this study, a new design of multi-layer phased array antenna for millimeter-wave (mm-Wave) fifth ...
The design and performance of mm-wave phased array antenna for 5G mobile broadband communication sys...
The design of a 28 GHz phased array antenna for future fifth generation (5G) mobile-phone applicatio...
An insensitive planar phased array antenna with high efficiency function for 5G applications is intr...
A new design of dual-band antenna array with 3D-coverage beam steering characteristic for millimeter...
An electronically beam-steerable antenna (BSA) is envisioned. The presented BSA is a possible soluti...
A phased-array antenna design for 5G base station applications in the 3.4-3.8 GHz band is presented....
In mobile communications, the research and development for the fifth generation (5G) has gained sign...
5G will support significantly faster mobile broadband speeds and extensive mobile data usage, as wel...
Cellular Communication Technology has evolved over the past 3 decades with each phase bringing with ...
In this paper, a phased array antenna is designed at millimeter-wave frequency bands for future 5G b...
9.10.2020 9:00 – 12:00 via Zoom https://aalto.zoom.us/j/66371586377The massive increase in the numbe...
The focus of this manuscript was to propose a new phased array antenna design for the fifth generati...
The millimeter-wave 37 –43.5GHz band is proposed to provide the requested multigigabit-per-second (G...
YesThis study aims to introduce a new phased array design with improved radiation properties for fut...