A conformal transmitarray with thinned control is presented, operating at 28 GHz. Its side panels are rotated to align with the maximum steering angle, increasing the gain and reducing the scan loss. The transmitarray is fed by an 8-element linear phased array antenna. Beam focusing to +/- 53 degrees is demonstrated for two different directions, using combinations of crossed-slot unit cells. A unit cell placement rule is proposed to significantly reduce (i.e. thin) the required number of reconfigurable unit cells. A filling factor of 43% was achieved compared to a fully populated design. This reduces the cost and biasing complexity. By minimising scan loss, this antenna could improve the performance of 5G small-cell access points
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
A conformal transmitarray with thinned control is presented, operating at 28 GHz. Its side panels ar...
A conformal transmitarray with thinned control is presented, operating at 28 GHz. Its side panels ar...
Beam steering impairments adversely affect antenna performance at wider steering angles. Scan loss d...
Beam steering impairments adversely affect antenna performance at wider steering angles. Scan loss d...
© 1963-2012 IEEE. A novel conformal transmitarray with beam steering ability is presented. First, an...
In contrast to using multi-layer frequency selective surface (FSS) elements or tightly coupled eleme...
In contrast to using multi-layer frequency selective surface (FSS) elements or tightly coupled eleme...
In contrast to using multi-layer frequency selective surface (FSS) elements or tightly coupled eleme...
With the growing of wireless technology, the need for lower-profile, electronically reconfigurable, ...
With the growing of wireless technology, the need for lower-profile, electronically reconfigurable, ...
In this work a conceptual design of a conformal antenna array is presented for a millimeter-wave ant...
In millimeter-wave (mmWave) communications, the antenna gain is a crucial parameter to overcome path...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
A conformal transmitarray with thinned control is presented, operating at 28 GHz. Its side panels ar...
A conformal transmitarray with thinned control is presented, operating at 28 GHz. Its side panels ar...
Beam steering impairments adversely affect antenna performance at wider steering angles. Scan loss d...
Beam steering impairments adversely affect antenna performance at wider steering angles. Scan loss d...
© 1963-2012 IEEE. A novel conformal transmitarray with beam steering ability is presented. First, an...
In contrast to using multi-layer frequency selective surface (FSS) elements or tightly coupled eleme...
In contrast to using multi-layer frequency selective surface (FSS) elements or tightly coupled eleme...
In contrast to using multi-layer frequency selective surface (FSS) elements or tightly coupled eleme...
With the growing of wireless technology, the need for lower-profile, electronically reconfigurable, ...
With the growing of wireless technology, the need for lower-profile, electronically reconfigurable, ...
In this work a conceptual design of a conformal antenna array is presented for a millimeter-wave ant...
In millimeter-wave (mmWave) communications, the antenna gain is a crucial parameter to overcome path...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...
International audienceA fully electronically reconfigurable 400-element transmitarray is studied num...