DocumentCode :
744278
Title :
A Differentially Excited Coupled Half-Width Microstrip Leaky {\\rm EH}_{1} Mode Antenna
Author :
Guang-Fu Cheng ; Tzuang, Ching-Kuang C.
Author_Institution :
Grad. Inst. of Commun. Eng., Nat. Taiwan Univ., Taipei, Taiwan
Volume :
61
Issue :
12
fYear :
2013
Firstpage :
5885
Lastpage :
5892
Abstract :
This paper presents a coupled half-width leaky-wave antenna driven differentially. The guided-wave structure of coupled half-width microstrip lines are proposed and investigated, showing two leaky modes in the form of even- and odd-symmetry, respectively. Rigorous studies show that the odd-leaky-mode outperforms the even-mode approach in radiation patterns and bandwidth. Following the rigorous investigation of the modal characteristics of the coupled half-width EH1 mode guided structure, this paper reports a differentially fed, coupled, odd-leaky-mode, half-width, antenna of size 1λ0 by 3.6λ0 (including the feed), showing measured maximum antenna gain of 11.6 dBi, 15% fractional bandwidth, gain flatness of 2.4-dB variation, and input return loss greater than 10 dB. (λ0 is the free space wavelength at the maximum gain frequency of 10.1 GHz). Both full-wave simulated results and measured data show good agreements for the proposed antenna structure. The measured leaky-wave antenna performance is compared to the recently published results, demonstrating a good compromise among all major performance metrics.
Keywords :
antenna feeds; antenna radiation patterns; leaky wave antennas; microstrip antennas; microstrip lines; antenna feed; antenna radiation pattern; coupled half-width microstrip line; differentially excited coupled half-width microstrip leaky-wave EH1 mode antenna; even-mode-symmetry approach; fractional bandwidth; frequency 10.1 GHz; gain 2.4 dB; guided-wave structure; modal characteristics; odd-leaky-symmetry mode; Bandwidth; Cutoff frequency; Gain; Leaky wave antennas; Microstrip; Microstrip antennas; Substrates; Antennas; leaky-wave antenna;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2013.2280473
Filename :
6588566
Link To Document :
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