DocumentCode :
87885
Title :
An Electrically Small Conical Folded Dipole Antenna for Use as a Compact, Self-Resonant Mesoband High-Power Microwave Source
Author :
Armanious, Miena M. H. ; Bernal Olaya, Sandra V. ; Tyo, J. Scott ; Skipper, Michael C. ; Abdalla, Michael D. ; Altgilbers, Larry L. ; Bryan, Austen
Author_Institution :
Coll. of Opt. Sci., Univ. of Arizona, Tucson, AK, USA
Volume :
62
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
5960
Lastpage :
5967
Abstract :
Mesoband (MB) high-power microwave (HPM) sources use fast-risetime switches to trigger weak resonators in order to create a damped sinusoidal waveform. MB sources are more compact and less complicated than narrowband HPM sources, and they possess increased energy spectral density per pulse relative to ultrawideband HPM sources. In this paper we consider the design of a MB HPM system that operates at the low end of the VHF spectrum (below 50 MHz) that is based on a self-resonant, electrically small antenna (ESA). The ESA is based on a conical folded helix design. It is slowly charged up to high voltage, and it is then switched using a fast-rise time switch to convert the stored static energy into radiated electromagnetic fields. Here we show the design, modeling, and preliminary experimental results of the source operating as low as 38 MHz at an electrical size of ka = 0.43, where a is the radius of a sphere circumscribing the source. Experimental results are obtained in the far field for a charge voltage of 30 kV.
Keywords :
VHF antennas; conical antennas; dipole antennas; helical antennas; microwave resonators; microwave switches; ESA; MB-HPM sources; VHF spectrum; compact self-resonant mesoband high-power microwave source; conical folded helix design; damped sinusoidal waveform; electrically small conical folded dipole antenna; energy spectral density per pulse; fast-rise time switches; narrowband HPM sources; radiated electromagnetic fields; stored static energy; ultrawideband HPM sources; voltage 30 kV; weak resonators; Antenna feeds; Bandwidth; Dipole antennas; Helical antennas; Resonant frequency; Spirals; Antennas; high power microwaves;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2014.2360549
Filename :
6911937
Link To Document :
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