Frequency-selective surfaces to enhance performance of broad-band reconfigurable arrays

We present a novel frequency-selective surface (FSS) design aimed at enhancing the performance of broad-band reconfigurable antenna apertures. In particular, reconfigurable printed dipole arrays are examined in the presence of a multilayer FSS. Of particular interest is the design of FSS structures...

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Published inIEEE transactions on antennas and propagation Vol. 50; no. 12; pp. 1716 - 1724
Main Authors Erdemli, Y.E., Sertel, K., Gilbert, R.A., Wright, D.E., Volakis, J.L.
Format Journal Article
LanguageEnglish
Published New York IEEE 01.12.2002
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subjects
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ISSN0018-926X
1558-2221
DOI10.1109/TAP.2002.807377

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Abstract We present a novel frequency-selective surface (FSS) design aimed at enhancing the performance of broad-band reconfigurable antenna apertures. In particular, reconfigurable printed dipole arrays are examined in the presence of a multilayer FSS. Of particular interest is the design of FSS structures whose reflection coefficient has prespecified phase response over a broad set of frequencies. Previous FSSs primarily considered designs on the basis of the reflection coefficient amplitude and were intended for radome applications rather than substrates. Designing FSSs subject to phase requirements is seen to require some compromise in the magnitude. Broad-band requirements also present us with a need for noncommensurate FSS designs.
AbstractList We present a novel frequency-selective surface (FSS) design aimed at enhancing the performance of broad-band reconfigurable antenna apertures. In particular, reconfigurable printed dipole arrays are examined in the presence of a multilayer FSS. Of particular interest is the design of FSS structures whose reflection coefficient has prespecified phase response over a broad set of frequencies. Previous FSSs primarily considered designs on the basis of the reflection coefficient amplitude and were intended for radome applications rather than substrates. Designing FSSs subject to phase requirements is seen to require some compromise in the magnitude. Broad-band requirements also present us with a need for noncommensurate FSS designs.
In this paper, we present a novel frequency-selective surface (FSS) design aimed at enhancing the performance of broad-band reconfigurable antenna apertures. In particular, reconfigurable printed dipole arrays are examined in the presence of a multilayer FSS. Of particular interest is the design of FSS structures whose reflection coefficient has prespecified phase response over a broad set of frequencies. Previous FSSs primarily considered designs on the basis of the reflection-coefficient amplitude and were intended for radome applications rather than substrates. Designing FSSs subject to phase requirements will be seen to require some compromise in the magnitude. Broad-band requirements also present us with a need for noncommensurate FSS designs. (Author)
Author Sertel, K.
Erdemli, Y.E.
Volakis, J.L.
Gilbert, R.A.
Wright, D.E.
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Snippet We present a novel frequency-selective surface (FSS) design aimed at enhancing the performance of broad-band reconfigurable antenna apertures. In particular,...
In this paper, we present a novel frequency-selective surface (FSS) design aimed at enhancing the performance of broad-band reconfigurable antenna apertures....
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StartPage 1716
SubjectTerms Amplitudes
Antenna arrays
Antennas
Aperture antennas
Arrays
Bandwidth
Dipoles
Finite element methods
Frequency selective surfaces
Multilayers
Narrowband
Nonhomogeneous media
Performance enhancement
Radomes
Reflection
Reflection coefficient
Reflector antennas
Resonance
Title Frequency-selective surfaces to enhance performance of broad-band reconfigurable arrays
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