The Digital Data Acquisition System for the Russian VLBI-network of New Generation
Transactions of IAA RAS, issue 21, 3–13 (2010)
Keywords: радиоинтерферометрия со сверхдлинными базами, аналого-цифровые преобразователи, программируемые логические интегральные схемы
Abstract
Designing principles of Digital Data Acquisition System for radiotelescopes with small antennas are presented. The system has passband of 500 MHz in each channel and output total data rate of 8 Gb/s. High-speed ADCs and FPGAs are used in the system. Experimental researches of two-channel system prototype have confirmed an opportunity of system realization on accessible electronic components.
Citation
S. Grenkov, N. Koltsov, E. Nosov, L. Fedotov. The Digital Data Acquisition System for the Russian VLBI-network of New Generation // Transactions of IAA RAS. — 2010. — Issue 21. — P. 3–13.
@article{grenkov2010,
abstract = {Designing principles of Digital Data Acquisition System for radiotelescopes with small antennas are presented. The system has passband of 500 MHz in each channel and output total data rate of 8 Gb/s. High-speed ADCs and FPGAs are used in the system. Experimental researches of two-channel system prototype have confirmed an opportunity of system realization on accessible electronic components.},
author = {S. Grenkov and N. Koltsov and E. Nosov and L. Fedotov},
issue = {21},
journal = {Transactions of IAA RAS},
keyword = {радиоинтерферометрия со сверхдлинными базами, аналого-цифровые преобразователи, программируемые логические интегральные схемы},
pages = {3--13},
title = {The Digital Data Acquisition System for the Russian VLBI-network of New Generation},
url = {http://iaaras.ru/en/library/paper/688/},
year = {2010}
}
TY - JOUR
TI - The Digital Data Acquisition System for the Russian VLBI-network of New Generation
AU - Grenkov, S.
AU - Koltsov, N.
AU - Nosov, E.
AU - Fedotov, L.
PY - 2010
T2 - Transactions of IAA RAS
IS - 21
SP - 3
AB - Designing principles of Digital Data Acquisition System for
radiotelescopes with small antennas are presented. The system has
passband of 500 MHz in each channel and output total data rate of 8
Gb/s. High-speed ADCs and FPGAs are used in the system. Experimental
researches of two-channel system prototype have confirmed an
opportunity of system realization on accessible electronic
components.
UR - http://iaaras.ru/en/library/paper/688/
ER -