• DocumentCode
    1544626
  • Title

    Wire-antenna designs using genetic algorithms

  • Author

    Altshuler, Edward E. ; Linden, Derek S.

  • Author_Institution
    Rome Lab., Hanscom AFB, MA, USA
  • Volume
    39
  • Issue
    2
  • fYear
    1997
  • fDate
    4/1/1997 12:00:00 AM
  • Firstpage
    33
  • Lastpage
    43
  • Abstract
    There is a large class of electromagnetic radiators designated as wire antennas. As a rule, an inductive process is used to design these antennas. Either an integral equation is formulated or a simulator is used that gives the current distributions on the wires of the antenna, from which the electromagnetic properties of the antenna can then be determined. Once the antenna properties are known, the parameters are optimized, using guides such as intuition, experience, simplified equations, or empirical studies. However, using an electromagnetics simulator in conjunction with a genetic algorithm (GA), it is possible to design an antenna using a completely deductive approach: the desired electromagnetic properties of the antenna are specified, and the wire configuration that most closely produces these results is then synthesized by the algorithm. In this paper, we describe four antennas designed using GAs. The first is a monopole, loaded with a modified folded dipole that was designed to radiate uniform power over the hemisphere at a frequency of 1.6 GHz. The second antenna consists of seven wires, the locations and lengths of which are determined by the GA alone, that radiates waves with right-hand-circular polarization at elevation angles above 10°, also at 1.6 GHz. The last two antennas are modified Yagis. One is designed for a broad frequency band and very low sidelobes at a center frequency of 235 MHz. The other is designed for high gain at a single frequency of 432 MHz. We have built and tested these antennas
  • Keywords
    Yagi antenna arrays; antenna radiation patterns; antenna testing; dipole antennas; electromagnetic wave polarisation; genetic algorithms; monopole antennas; wire antennas; 1.6 GHz; 235 MHz; 432 MHz; Yagi; broad frequency band; deductive approach; electromagnetic radiators; electromagnetics simulator; genetic algorithms; modified folded dipole; monopole; right-hand-circular polarization; sidelobes; wire configuration; wire-antenna designs; Algorithm design and analysis; Current distribution; Dipole antennas; Electromagnetic radiation; Frequency; Genetic algorithms; Integral equations; Polarization; Wire; Yagi-Uda antennas;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    1045-9243
  • Type

    jour

  • DOI
    10.1109/74.584498
  • Filename
    584498