Title :
Electronically beam steerable lens antenna for 71–76/81–86 GHz backhaul applications
Author :
Artemenko, Alexey ; Mozharovskiy, Andrey ; Sevastyanov, Alexey ; Ssorin, Vladimir ; Maslennikov, Roman
Author_Institution :
Radio Gigabit LLC, Nizhny Novgorod, Russia
Abstract :
Design of an electronically beam steerable integrated lens antenna suitable for 71-76/81-86 GHz backhaul applications is presented. The lens is made from a thermoplastic material and has the aperture size (diameter) of 260 mm ensuring a half power beam width below 1°. The beam steering capability is provided by an antenna array of 4 microstrip patch feed elements and a single pole four through MMIC switch mounted on a high frequency printed circuit board. The half-power (-3 dB) overlapping level of the adjacent beams is achieved by selecting a proper distance between the feed elements in the array. The lens antenna has a WR-12 waveguide interface and can be easily integrated with traditional millimeter-wave radio systems. Measurement results of the fabricated lens antenna prototype with electronic beam steering are provided. A successful trial of the prototype was performed with a commercial 71-76/81-86 GHz system during a 3-month test at a mobile operator´s network.
Keywords :
beam steering; lens antennas; microwave antenna arrays; printed circuits; MMIC switch; WR-12 waveguide interface; antenna array; backhaul applications; beam steering capability; electronically beam steerable lens antenna; frequency 71 GHz to 86 GHz; half power beam width; high frequency printed circuit board; microstrip patch feed elements; millimeter-wave radio systems; thermoplastic material; Antenna measurements; Antennas; Boards; Frequency measurement; Strips; Switches; Waveguide transitions; Lens antenna; beam steering; switched array;
Conference_Titel :
Microwave Symposium (IMS), 2015 IEEE MTT-S International
Conference_Location :
Phoenix, AZ
DOI :
10.1109/MWSYM.2015.7166971