Title :
A Novel Design of Reconfigurable Slot Antenna With Switchable Band Notch and Multiresonance Functions for UWB Applications
Author :
Valizade, A. ; Ghobadi, Ch ; Nourinia, J. ; Ojaroudi, M.
Author_Institution :
Dept. of Electr. Eng., Urmia Univ., Urmia, Iran
fDate :
7/4/1905 12:00:00 AM
Abstract :
A novel printed reconfigurable square slot antenna with switchable band-notched and multiresonance performances is designed and manufactured. In the proposed structure, in order to generate single band-notched characteristics, a Π-shaped slot is etched on the radiating stub. Furthermore, to achieve a reconfigurable function, a p-i-n diode is utilized across the slot. When this p-i-n diode is biased forwardly, the Π -shaped slot transforms to a pair of C-shaped slots, and also by changing to this new structure, an additional resonance is excited. Additionally, by cutting two modified L-shaped slits with variable dimensions on the microstrip feed line, new additional resonance is excited, and hence wider impedance bandwidth can be produced, especially at the higher band. The designed antenna has a small size of 20 × 20 mm2 while showing the radiation performance in the frequency band of 3.04 to over 11.17 GHz with a switchable band-rejection performance in the frequency band of 5.03-5.94 GHz. Simulated and experimental results obtained for this antenna show that it exhibits good radiation behavior within the ultrawideband (UWB) frequency range and also it has a reconfigurable frequency band-notched function in the range of 5-6 GHz that can eliminate the interference between UWB frequency band and other existing wireless communication systems.
Keywords :
antenna radiation patterns; interference suppression; microstrip antennas; microstrip lines; p-i-n diodes; slot antennas; ultra wideband antennas; ultra wideband communication; Π-shaped slot; C-shaped slots; UWB applications; forward biased p-i-n diode; frequency 5 GHz to 6 GHz; impedance bandwidth; interference elimination; microstrip feed line; modified L-shaped slits; multiresonance function; printed reconfigurable square slot antenna design; radiating stub; radiation performance; reconfigurable frequency band-notched function; single band-notched characteristics; switchable band-notched performances; switchable band-rejection performance; ultrawideband frequency range; wireless communication system; Bandwidth; Microstrip antennas; PIN photodiodes; Resonant frequency; Slot antennas; Ultra wideband antennas; $prod$-shaped slot; L-shaped slit; p-i-n diode; printed slot antenna; reconfigurable structure;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2012.2218271