TY - GEN
T1 - Integration design of high efficiency reflectarray and transmitarray for millimeter wave wireless communications
AU - Zhang, Yan
AU - Jiang, Mei
AU - Yu, Shunhua
AU - Hong, Wei
N1 - Publisher Copyright:
© 2014 IEEE.
PY - 2014/3/17
Y1 - 2014/3/17
N2 - In this paper, the research progress of reflectarray and transmitarray for millimeter wave (mmW) wireless communications has been briefly reviewed. The newly released Q-band spectrum (40.5-50.2GHz) by Chinese government is assigned to support wireless communication business for both long- and short-range scenarios. To meet the requirement of high gain antenna for long-range case, reflectarray and transmitarray have been developed and exemplified in Q band. A new type of integration design of folded reflectarray and transmitarray antennas have been proposed, and planar feeds are adopted instead of conventional bulky feeds, e.g. horn antenna or open waveguide. The used planar feed give the possibility for integrating the entire reflectarray/transmitarray with active/RF circuits directly, and no additional transition is needed between the antenna and RF circuit, which will highly improve the performance of the system.
AB - In this paper, the research progress of reflectarray and transmitarray for millimeter wave (mmW) wireless communications has been briefly reviewed. The newly released Q-band spectrum (40.5-50.2GHz) by Chinese government is assigned to support wireless communication business for both long- and short-range scenarios. To meet the requirement of high gain antenna for long-range case, reflectarray and transmitarray have been developed and exemplified in Q band. A new type of integration design of folded reflectarray and transmitarray antennas have been proposed, and planar feeds are adopted instead of conventional bulky feeds, e.g. horn antenna or open waveguide. The used planar feed give the possibility for integrating the entire reflectarray/transmitarray with active/RF circuits directly, and no additional transition is needed between the antenna and RF circuit, which will highly improve the performance of the system.
UR - https://www.scopus.com/pages/publications/84946692899
U2 - 10.1109/ICCPS.2014.7062265
DO - 10.1109/ICCPS.2014.7062265
M3 - 会议稿件
AN - SCOPUS:84946692899
T3 - 2014 IEEE International Conference on Communication Problem-Solving, ICCP 2014
SP - 250
EP - 253
BT - 2014 IEEE International Conference on Communication Problem-Solving, ICCP 2014
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2014 IEEE International Conference on Communication Problem-Solving, ICCP 2014
Y2 - 5 December 2014 through 7 December 2014
ER -