Title :
The Circular Eleven Antenna: A New Decade-Bandwidth Feed for Reflector Antennas With High Aperture Efficiency
Author :
Jungang Yin ; Jian Yang ; Pantaleev, M. ; Helldner, Leif
Author_Institution :
Dept. of Electron. & Telecommun., Norwegian Univ. of Sci. & Technol. (NTNU), Trondheim, Norway
Abstract :
Future ultra-wideband (UWB) radio telescopes require UWB feeds for reflector antennas, and many new UWB feed technologies have gained substantial progress to satisfy the tough specifications for future radio telescope projects, such as the square kilometer array (SKA). It has been noticed that, different from traditional narrow-band horn feeds, all UWB feeds are non-BOR (Body of Revolution) antennas. Therefore, BOR1 efficiency becomes an important characterization for the modern UWB feed technologies. We present a novel circular Eleven feed, constructed of “circularly” curved folded dipoles printed on flat circuit boards, in order to have high BOR1 efficiency at a low manufacture cost. The Genetic Algorithm (GA) optimization scheme has been applied to the design for achieving a low reflection coefficient. Simulated and measured results show that the circular Eleven feed has a reflection coefficient below -6 dB over 1.6-14 GHz and below -10 dB over 78% of the band, and an aperture efficiency higher than 60% over 1-10 GHz and 50% up to 14 GHz.
Keywords :
dipole antenna arrays; genetic algorithms; horn antennas; microstrip antenna arrays; printed circuits; radiotelescopes; reflector antenna feeds; ultra wideband antennas; GA; SKA; UWB feed technology; aperture efficiency; body of revolution; circular eleven antenna; circularly curved folded dipole printed antenna; decade-bandwidth feed; flat circuit board; genetic algorithm optimization scheme; narrow-band horn feed; nonBOR antenna; reflector antenna; square kilometer array; ultrawideband radio telescope; ${rm BOR}_{1}$ efficiency; Aperture efficiency; eleven feed; reflector antenna;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2263275