Title :
Design and Optimization of a Compact Wideband Hat-Fed Reflector Antenna for Satellite Communications
Author :
Geterud, Erik G. ; Yang, Jian ; Östling, Tomas ; Bergmark, Pontus
Author_Institution :
GlobalView Syst., Mölndal, Sweden
Abstract :
We present a new design of the hat-fed reflector antenna for satellite communications, where a low reflection coefficient, high gain, low sidelobes and low cross-polar level are required over a wide frequency band. The hat feed has been optimized by using the Genetic Algorithm through a commercial FDTD solver, QuickWave-V2D, together with an own developed optimization code. The Gaussian vertex plate has been applied at the center of the reflector in order to improve the reflection coefficient and reduce the far-out sidelobes. A parabolic reflector with a ring-shaped focus has been designed for obtaining nearly 100% phase efficiency. The antenna´s reflection coefficient is below -17 dB and the radiation patterns satisfy the M-x standard co- and cross-polar sidelobe envelopes for satellite ground stations over a bandwidth of 30%. A low-cost monolayer radome has been designed for the antenna with satisfactory performance. The simulations have been verified by measurements; both of them are presented in the paper.
Keywords :
Gaussian processes; antenna feeds; broadband antennas; finite difference time-domain analysis; genetic algorithms; radomes; reflector antennas; satellite communication; Gaussian vertex plate; M-x standard copolar sidelobe envelopes; M-x standard cross-polar sidelobe envelopes; QuickWave-V2D; antenna reflection coefficient; commercial FDTD solver; compact wideband hat-fed reflector antenna optimization; cross-polar level; far-out sidelobe reduction; genetic algorithm; low-cost monolayer radome; optimization code; parabolic reflector; phase efficiency; ring-shaped focus; satellite communications; satellite ground stations; Antenna measurements; Antenna radiation patterns; Apertures; Feeds; Optimization; Standards; Antenna feeds; corrugated surfaces; optimization; reflector antennas; satellite ground stations;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2220113