Development of the Ultra-Wideband Circular Antenna Array

The present paper describes the design of an ultrawideband circular antenna array for direction finding applications. The proposed antenna array consists of nine identical biconical dipoles, has a diameter of 522 mm, its operation frequency band is 0.3-3 GHz. Numerical and experimental results for b...

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Published in:2020 Systems of Signal Synchronization, Generating and Processing in Telecommunications (SYNCHROINFO) pp. 1 - 4
Main Authors: Ballandovich, S. V., Antonov, Yu. G., Kostikov, G. A., Liubina, L. M., Sugak, M. I.
Format: Conference Proceeding
Language:English
Published: IEEE 01.07.2020
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Abstract The present paper describes the design of an ultrawideband circular antenna array for direction finding applications. The proposed antenna array consists of nine identical biconical dipoles, has a diameter of 522 mm, its operation frequency band is 0.3-3 GHz. Numerical and experimental results for biconical antenna under study are presented. A special feature of the proposed array element design is the possibility of its production by cheap laser-cutting technique and its modular construction. The key criteria for selecting an element for implementing the direction finding antenna array is the antenna factor. Influence of mutual coupling and shading effect in the antenna array have been also estimated.
AbstractList The present paper describes the design of an ultrawideband circular antenna array for direction finding applications. The proposed antenna array consists of nine identical biconical dipoles, has a diameter of 522 mm, its operation frequency band is 0.3-3 GHz. Numerical and experimental results for biconical antenna under study are presented. A special feature of the proposed array element design is the possibility of its production by cheap laser-cutting technique and its modular construction. The key criteria for selecting an element for implementing the direction finding antenna array is the antenna factor. Influence of mutual coupling and shading effect in the antenna array have been also estimated.
Author Ballandovich, S. V.
Kostikov, G. A.
Liubina, L. M.
Antonov, Yu. G.
Sugak, M. I.
Author_xml – sequence: 1
  givenname: S. V.
  surname: Ballandovich
  fullname: Ballandovich, S. V.
  organization: Saint Petersburg Electrotechnical University "LETI",Saint Petersburg,Russia
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  givenname: Yu. G.
  surname: Antonov
  fullname: Antonov, Yu. G.
  organization: Saint Petersburg Electrotechnical University "LETI",Saint Petersburg,Russia
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  givenname: G. A.
  surname: Kostikov
  fullname: Kostikov, G. A.
  organization: Saint Petersburg Electrotechnical University "LETI",Saint Petersburg,Russia
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  givenname: L. M.
  surname: Liubina
  fullname: Liubina, L. M.
  organization: Saint Petersburg Electrotechnical University "LETI",Saint Petersburg,Russia
– sequence: 5
  givenname: M. I.
  surname: Sugak
  fullname: Sugak, M. I.
  organization: Saint Petersburg Electrotechnical University "LETI",Saint Petersburg,Russia
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Snippet The present paper describes the design of an ultrawideband circular antenna array for direction finding applications. The proposed antenna array consists of...
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SubjectTerms Antenna arrays
antenna factor
Antenna measurements
biconical antenna
circular antenna array
Dipole antennas
direction finding
Directive antennas
Switches
Ultra wideband antennas
ultra-wideband antenna
Title Development of the Ultra-Wideband Circular Antenna Array
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