The Murchison Widefield Array Correlator

نویسندگان

  • Stephen M. Ord
  • Brian Crosse
  • David Emrich
  • Dave Pallot
  • Randall B. Wayth
  • Michael A. Clark
  • Steven E. Tremblay
  • Wayne Arcus
  • David Barnes
  • Martin E. Bell
  • Gianni Bernardi
  • N. D. Ramesh Bhat
  • Julie D. Bowman
  • Frank H. Briggs
  • John D. Bunton
  • Roger J. Cappallo
  • Brian E. Corey
  • Avinash A. Deshpande
  • Ludi deSouza
  • Aaron Ewell-Wice
  • Lu Feng
  • Robert F. Goeke
  • Lincoln J. Greenhill
  • Bryna J. Hazelton
  • David Edwin Herne
  • Jacqueline N. Hewitt
  • Luke Hindson
  • Natasha Hurley-Walker
  • Daniel Jacobs
  • Melanie Johnston-Hollitt
  • David L. Kaplan
  • Justin C. Kasper
  • Barton B. Kincaid
  • Ronald Koenig
  • Eric Kratzenberg
  • Nadia Kudryavtseva
  • E. Lenc
  • Colin J. Lonsdale
  • Mervyn J. Lynch
  • Benjamin McKinley
  • Stephen R. McWhirter
  • Daniel A. Mitchell
  • Miguel F. Morales
  • Edward H. Morgan
  • Divya Oberoi
  • André R. Offringa
  • Joseph Pathikulangara
  • Bart Pindor
  • Thiagaraj Prabu
  • Pietro Procopio
  • Ronald A. Remillard
  • J. Riding
  • Alan E. E. Rogers
  • Anish A. Roshi
  • Joseph E. Salah
  • Robert J. Sault
  • Udaya Shankar Natarajan
  • K. S. Srivani
  • James Stevens
  • Ravi Subrahmanyan
  • Steven J. Tingay
  • Mark F. Waterson
  • Rachel Lindsey Webster
  • Alan R. Whitney
  • Andrew J. Williams
  • Christopher L. Williams
  • J. Stuart B. Wyithe
چکیده

The Murchison Widefield Array (MWA) is a Square Kilometre Array (SKA) Precursor. The telescope is located at the Murchison Radio–astronomy Observatory (MRO) in Western Australia (WA). The MWA consists of 4096 dipoles arranged into 128 dual polarisation aperture arrays forming a connected element interferometer that cross-correlates signals from all 256 inputs. A hybrid approach to the correlation task is employed, with some processing stages being performed by bespoke hardware, based on Field Programmable Gate Arrays (FPGAs), and others by Graphics Processing Units (GPUs) housed in general purpose rack mounted servers. The correlation capability required is approximately 8 TFLOPS (Tera FLoating point Operations Per Second). The MWA has commenced operations and the correlator is generating 8.3 TB/day of correlation products, that are subsequently transferred 700 km from the MRO to Perth (WA) in real-time for storage and offline processing. In this paper we outline the correlator design, signal path, and processing elements and present the data format for the internal and external interfaces.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

A GPU based real-time software correlation system for the Murchison Widefield Array prototype

Modern graphics processing units (GPUs) are inexpensive commodity hardware that offer Tflop/s theoretical computing capacity. GPUs are well suited to many compute-intensive tasks including digital signal processing. We describe the implementation and performance of a GPU-based digital correlator for radio astronomy. The correlator is implemented using the NVIDIA CUDA development environment. We...

متن کامل

Remote Sensing of the Heliosphere with the Murchison Widefield Array

The Murchison Widefield Array (MWA) is one of the new technology low frequency radio interferometers currently under construction at an extremely radio quiet location in Western Australia. The MWA design brings to bear the recent availability of powerful high-speed computational and digital signal processing capabilities on the problem of low frequency high-fidelity imaging with a rapid cadence...

متن کامل

EVLA Memo 64 Wide-Field Imaging with the EVLA: WIDAR Correlator Modes and Output Data Rates

Of all the anticipated imaging problems to be undertaken by the EVLA, the most demanding, both in terms of data rate, data storage and post-processing, will likely be that of wide-band, wide-field imaging imaging the entire antenna primary beam with the full bandwidth. In this memo, I summarize the correlator requirements for various observing scenarios with the EVLA: distortion-free imaging of...

متن کامل

Ionospheric Modelling using GPS to Calibrate the MWA. II: Regional ionospheric modelling using GPS and GLONASS to estimate ionospheric gradients

We estimate spatial gradients in the ionosphere using the Global Positioning System (GPS) and GLONASS (Russian global navigation system) observations, utilising data from multiple GPS stations in the vicinity of Murchison Radio-astronomy Observatory (MRO). In previous work the ionosphere was characterised using a single-station to model the ionosphere as a single layer of fixed height and this ...

متن کامل

The giant lobes of Centaurus A observed at 118 MHz with the Murchison Widefield Array

We present new wide-field observations of Centaurus A (Cen A) and the surrounding region at 118 MHz with the Murchison Widefield Array (MWA) 32-tile prototype, with which we investigate the spectral-index distribution of Cen A’s giant radio lobes. We compare our images to 1.4 GHz maps of Cen A and compute spectral indices using temperature-temperature plots and spectral tomography. We find that...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • CoRR

دوره abs/1501.05992  شماره 

صفحات  -

تاریخ انتشار 2009