Title :
The Long Wavelength Array
Author :
Ellingson, Steven W. ; Clarke, Tracy E. ; Cohen, Aaron ; Craig, Joseph ; Kassim, Namir E. ; Pihlström, Ylva ; Rickard, Lee J. ; Taylor, Gregory B.
Author_Institution :
Bradley Dept. of Electr. & Comput. Eng., Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
Abstract :
The Long Wavelength Array (LWA) will be a new multipurpose radio telescope operating in the frequency range 10-88 MHz. Upon completion, the LWA will consist of 53 phased array ldquostationsrdquo distributed over a region about 400 km in diameter in the state of New Mexico. Each station will consist of 256 pairs of dipole-type antennas whose signals are formed into beams, with outputs transported to a central location for high-resolution aperture synthesis imaging. The resulting image sensitivity is estimated to be a few millijanskys (5 sigma, 8 MHz, two polarizations, 1 h, zenith) in 20-80 MHz; with resolution and field of view of (8 ´´, 8deg) and (2´´, 2 deg) at 20 and 80 MHz, respectively. Notable engineering features of the instrument, demonstrated in this paper, include Galactic-noise limited active antennas and direct sampling digitization of the entire tuning range. This paper also summarizes the LWA science goals, specifications, and analysis leading to top-level design decisions.
Keywords :
array signal processing; dipole antenna arrays; radioastronomical techniques; radioastronomy; radiotelescopes; Galactic noise limited active antennas; LWA; Long Wavelength Array; New Mexico; dipole type antennas; direct sampling digitization; frequency 10 MHz to 88 MHz; high resolution aperture synthesis imaging; image sensitivity; multipurpose radiotelescope; phased array stations; signal beamforming; Aperture antennas; Dipole antennas; Frequency; High-resolution imaging; Image resolution; Phased arrays; Polarization; Radio astronomy; Signal resolution; Signal synthesis; Aperture synthesis imaging; digital beamforming; radio astronomy;
Journal_Title :
Proceedings of the IEEE
DOI :
10.1109/JPROC.2009.2015683