DocumentCode :
738206
Title :
Feasibility Study of a Wirelessly Controlled and Powered Space-Fed Phased Array Antenna
Author :
Stoneback, M. ; Stoneback, M. ; Kuga, Yasuo
Author_Institution :
Boeing Res. & Technol., Renton, WA, USA
Volume :
61
Issue :
12
fYear :
2013
Firstpage :
5984
Lastpage :
5991
Abstract :
A space-fed X-band phased array antenna (PAA) is presented. The space-fed PAA uses physically autonomous individually addressable unit cells as the building blocks of an arbitrarily large array antenna. The X-band PAA unit cell consists of both a feed facing printed antenna element and a target facing printed antenna element. These elements are related by an RF phase shifter placed in the RF signal path between them which introduces relative phase delay and enables analog beam forming. Unit cell autonomy is realized by wirelessly transferring power and command signals required to operate a microcontroller (MCU) and the RF phase shifter at each unit cell. Each unit cell includes RF to DC conversion circuitry as well as an MCU designed to interpret a common control signal and command unit cell phase delay. The wireless phased array unit cell can be replicated in configurations of size and shape that are independent of RF, power, and array module control distribution networks. To demonstrate feasibility a four-element wireless PAA is constructed and antenna patterns for various control states are shown.
Keywords :
antenna feeds; antenna phased arrays; antenna radiation patterns; microcontrollers; phase shifters; space vehicle antennas; MCU; RF phase shifter; RF signal path; RF to DC conversion circuitry; X-band PAA unit cell; X-band phased array antenna; analog beam forming; antenna pattern; command unit cell phase delay; feed facing printed antenna element; microcontroller; space-fed PAA; space-fed phased array antenna; target facing printed antenna element; unit cell autonomy; wireless phased array unit cell; wirelessly controlled phased array antenna; Antenna measurements; Arrays; Feeds; Radio frequency; Slot antennas; Wireless communication; Flexible printed circuits; lightweight arrays; phased arrays; wireless power;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2281743
Filename :
6600980
Link To Document :
بازگشت