Title :
Investigation Into the Application of Artificial Magnetic Conductors to Bandwidth Broadening, Gain Enhancement and Beam Shaping of Low Profile and Conventional Monopole Antennas
Author :
Foroozesh, Alireza ; Shafai, Lotfollah
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Manitoba, Winnipeg, MB, Canada
Abstract :
The reflection coefficient phase is investigated for several different artificial magnetic conductors (AMCs) having canonical FSS-type shapes. Three of them are selected, each representing a different class, and fine tuned to exhibit identical resonant frequency. Polarization and angular dependence as well as the effects of losses on these structures are studied. Next, a low-profile inverted L-shape monopole antenna (ILSMA) is placed horizontally above the ground plane. Vertical monopole antenna (VMA) is also placed above them. It is shown that using some of the aforementioned AMCs, the input impedance of both ILSMA and VMA can not only be matched, but also the input impedance bandwidth enhancement as wide as 27% and 35% are obtained, respectively. The VMA study on AMC ground planes which reveals a counter-intuitive phenomenon has not been explored in the literature, previously. It is revealed that the broadband characteristics can also be achieved for smaller size of the AMC ground planes, which enables the antenna to be designed in compact size. It is also illustrated that reflection characteristics of the AMC is not sufficient to evaluate AMC performance when it is used as an antenna ground plane. This is illustrated through extensive simulation and measurement results.
Keywords :
bandwidth allocation; conductors (electric); electromagnetic wave polarisation; monopole antennas; AMC; VMA; artificial magnetic conductors; bandwidth broadening; beam shaping; gain enhancement; inverted L-shape antenna; low profile antennas; polarization; vertical monopole antenna; Antenna measurements; Antenna radiation patterns; Broadband antennas; Impedance; Reflection; Resonant frequency; Antenna bandwidth; antenna gain; antenna input impedance; artificial magnetic conductor (AMC); monopole antenna; perfect electric conductor (PEC); perfect magnetic conductor (PMC);
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2010.2090458