Title :
Reconfigurable nonconformal spiral microantenna for wireless communication devices
Author :
Caratelli, Diego ; Massaro, Alessandro ; Lay-Ekuakille, Aimé ; Li, Zhi-hong
Author_Institution :
Int. Res. Centre for Telecommun. & Radar, Delft Univ. of Technol., Delft, Netherlands
Abstract :
Reconfigurability in an antenna system is a desired characteristic that has attracted of attention in the past years. In this work, a novel class of nonconformal Fermat-like spiral multi-port microantennas for next-generation wireless communications and radar applications is presented. The device modeling is carried out by using a computationally enhanced locally conformal finite-difference time-domain full-wave procedure. In this way, the circuital characteristics and radiation properties of the antennas are investigated accurately. The structure reconfigurability, in terms of frequency of operation and radiation efficiency, is technically performed by a suitable solid-state tuning circuitry adopted to properly change the feeding/loading conditions at the antenna input ports.
Keywords :
antenna radiation patterns; finite difference time-domain analysis; radiocommunication; spiral antennas; circuital characteristic; finite-difference time-domain full-wave procedure; next-generation wireless communication; nonconformal Fermat-like multiport microantenna; radar application; radiation property; reconfigurable nonconformal spiral microantenna; solid-state tuning circuitry; wireless communication device; Antenna radiation patterns; Loaded antennas; Loading; Spirals; Time domain analysis; Wireless communication; Microantenna; locally conformal finite-difference time-domain modeling; nanowiring technology; reconfigurable sensor; wireless device;
Conference_Titel :
Measurements and Networking Proceedings (M&N), 2011 IEEE International Workshop on
Conference_Location :
Anacapri
Print_ISBN :
978-1-4577-0455-0
DOI :
10.1109/IWMN.2011.6088476