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Directive electric–magnetic antenna for ultra-wideband applications
by
Tran, Dinh P.
, Caratelli, Diego
, Yarovoy, Alexander G.
, Haider, Nadia
in
antenna architecture
/ antenna radiation patterns
/ antenna topology
/ Antennas
/ Applied sciences
/ backfeeding technique
/ delays
/ directive antennas
/ directive electromagnetic antenna
/ electromagnetic characteristics
/ Equivalent circuits
/ Exact sciences and technology
/ Frequency bands
/ frequency radiation pattern
/ frequency‐independent equivalent circuit
/ front‐to‐back isolation
/ Group delay
/ impedance matching
/ loop antenna
/ loop antennas
/ monopole antennas
/ optimisation
/ Optimization
/ planar antennas
/ planar monopole antenna
/ planar nondispersive antenna
/ radar antennas
/ radiating element feature
/ radio frequency front end
/ Radiocommunications
/ radiowave propagation
/ Telecommunications
/ Telecommunications and information theory
/ Transmission loss
/ ultra wideband radar
/ Ultrawideband
/ Ultrawideband radar
2013
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Directive electric–magnetic antenna for ultra-wideband applications
by
Tran, Dinh P.
, Caratelli, Diego
, Yarovoy, Alexander G.
, Haider, Nadia
in
antenna architecture
/ antenna radiation patterns
/ antenna topology
/ Antennas
/ Applied sciences
/ backfeeding technique
/ delays
/ directive antennas
/ directive electromagnetic antenna
/ electromagnetic characteristics
/ Equivalent circuits
/ Exact sciences and technology
/ Frequency bands
/ frequency radiation pattern
/ frequency‐independent equivalent circuit
/ front‐to‐back isolation
/ Group delay
/ impedance matching
/ loop antenna
/ loop antennas
/ monopole antennas
/ optimisation
/ Optimization
/ planar antennas
/ planar monopole antenna
/ planar nondispersive antenna
/ radar antennas
/ radiating element feature
/ radio frequency front end
/ Radiocommunications
/ radiowave propagation
/ Telecommunications
/ Telecommunications and information theory
/ Transmission loss
/ ultra wideband radar
/ Ultrawideband
/ Ultrawideband radar
2013
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Do you wish to request the book?
Directive electric–magnetic antenna for ultra-wideband applications
by
Tran, Dinh P.
, Caratelli, Diego
, Yarovoy, Alexander G.
, Haider, Nadia
in
antenna architecture
/ antenna radiation patterns
/ antenna topology
/ Antennas
/ Applied sciences
/ backfeeding technique
/ delays
/ directive antennas
/ directive electromagnetic antenna
/ electromagnetic characteristics
/ Equivalent circuits
/ Exact sciences and technology
/ Frequency bands
/ frequency radiation pattern
/ frequency‐independent equivalent circuit
/ front‐to‐back isolation
/ Group delay
/ impedance matching
/ loop antenna
/ loop antennas
/ monopole antennas
/ optimisation
/ Optimization
/ planar antennas
/ planar monopole antenna
/ planar nondispersive antenna
/ radar antennas
/ radiating element feature
/ radio frequency front end
/ Radiocommunications
/ radiowave propagation
/ Telecommunications
/ Telecommunications and information theory
/ Transmission loss
/ ultra wideband radar
/ Ultrawideband
/ Ultrawideband radar
2013
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Directive electric–magnetic antenna for ultra-wideband applications
Journal Article
Directive electric–magnetic antenna for ultra-wideband applications
2013
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Overview
A novel planar non-dispersive antenna for ultra-wideband radar applications is introduced. The antenna concept is based on the combination of the electromagnetic characteristics of a loop and a planar monopole. A detail discussion on the proposed antenna topology and architecture is presented, and a dedicated backfeeding technique that shows a low transmission loss over a very wide frequency band is suggested. A frequency-independent equivalent circuit of the proposed antenna, useful in the codesign and optimisation of the relevant radio frequency front end is also extracted. It is experimentally demonstrated that the considered radiating element features a fractional bandwidth of 67%, good impedance matching, reasonably constant group delay and uni-directional stable over frequency radiation patterns with front-to-back isolation of about 12 dB.
Publisher
The Institution of Engineering and Technology,Institution of Engineering and Technology,The Institution of Engineering & Technology
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