Title :
Broadband Integrated Lens for Illuminating Reflector Antenna With Constant Aperture Efficiency
Author :
Fernandes, Carlos A. ; Lima, Eduardo B. ; Costa, Jorge R.
Author_Institution :
IST, Inst. de Telecomun., Lisbon, Portugal
Abstract :
A new integrated shaped lens antenna configuration is described with frequency stable radiation pattern and phase center position across a broad 1:3 frequency band, which can be used for focal plane reflector feeding in quasi-optical radio telescope systems. The lens is compatible with the integration of ultrawideband uniplanar printed feeds at its base and equally broadband mixing devices, like the Hot Electron Bolometer (HEB), although these are not used in the present work. Measurements on a scaled mm-wave lab prototype have confirmed stable performance versus frequency, with only dB directivity variation, and better than 94% Gaussicity, thanks to the possibility to impose a predefined output radiation pattern template. Simulations were performed to test the illumination of an off-set parabolic reflector by the lens radiation pattern, which confirmed reasonably constant aperture efficiency in the order of 78% across the 100% bandwidth.
Keywords :
antenna radiation patterns; bolometers; directive antennas; hot carriers; lens antennas; microstrip antennas; planar antennas; radiotelescopes; reflector antenna feeds; ultra wideband antennas; broadband integrated lens; broadband mixing devices; constant aperture efficiency; directivity variation; focal plane reflector feeding; frequency stable radiation pattern; hot electron bolometer; integrated shaped lens antenna configuration; offset parabolic reflector; phase center position across; quasioptical radio telescope system; reflector antenna; ultrawideband uniplanar printed feeds; Antenna radiation patterns; Broadband antennas; Broadband communication; Feeds; Lenses; Phase measurement; Submillimeter wave devices; Broadband stable radiation pattern; broadband stable phase center position; integrated lens antennas; millimeter- and submillimeter wave antennas; reflector feed;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2010.2078463