Title :
KAIRA: The Kilpisjärvi Atmospheric Imaging Receiver Array—System Overview and First Results
Author :
McKay-Bukowski, Derek ; Vierinen, J. ; Virtanen, Ilkka I. ; Fallows, Richard ; Postila, Markku ; Ulich, Thomas ; Wucknitz, Olaf ; Brentjens, Michiel ; Ebbendorf, Nico ; Enell, Carl-Fredrik ; Gerbers, Marchel ; Grit, Teun ; Gruppen, Peter ; Kero, Antti ; I
Author_Institution :
Sodankyla Geophys. Obs., Univ. of Oulu, Oulu, Finland
Abstract :
The Kilpisjärvi Atmospheric Imaging Receiver Array (KAIRA) is a dual array of omnidirectional VHF radio antennas located near Kilpisjärvi, Finland. It is operated by the Sodankylä Geophysical Observatory. It makes extensive use of the proven LOFAR antenna and digital signal-processing hardware, and can act as a stand-alone passive receiver, as a receiver for the European Incoherent Scatter (EISCAT) very high frequency (VHF) incoherent scatter radar in Tromsø, or for use in conjunction with other Fenno-Scandinavian VHF experiments. In addition to being a powerful observing instrument in its own right, KAIRA will act as a pathfinder for technologies to be used in the planned EISCAT_3-D phased-array incoherent scatter radar system and participate in very long baseline interferometry experiments. This paper gives an overview of KAIRA, its principal hardware and software components, and its main science objectives. We demonstrate the applicability of the radio astronomy technology to our geoscience application. Furthermore, we present a selection of results from the commissioning phase of this new radio observatory.
Keywords :
VHF antennas; antenna phased arrays; radar antennas; radioastronomical techniques; radiowave interferometry; receiving antennas; EISCAT_3-D phased-array incoherent scatter radar system; Fenno-Scandinavian VHF experiments; Finland; KAIRA; Kilpisjärvi; Kilpisjärvi Atmospheric Imaging Receiver Array; LOFAR antenna; digital signal-processing hardware; omnidirectional VHF radio antennas; radio astronomy technology; stand-alone passive receiver; very long baseline interferometry experiments; Antenna arrays; Arrays; Radar antennas; Radar imaging; Radar scattering; Antenna arrays; phased arrays; radar antennas; radio astronomy; receiving antennas;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2014.2342252