DocumentCode :
3240906
Title :
A Software Defined Radio Receiver Architecture Based on Cluster Computing
Author :
Lu, Guangjun ; Lu, Peizhong
Author_Institution :
Inf. Sci. & Technol. Inst. Zhengzhou, Zhengzhou
fYear :
2008
fDate :
24-26 Oct. 2008
Firstpage :
612
Lastpage :
619
Abstract :
Software defined Radio (SDR) has been widely accepted in the last few years. Up to now, most SDRs have been implemented based on DSP and FPGA, which has the advantage of low-cost, low power-consumption and compact size. But with the fast development of general-purpose computer and network communication technology, it becomes possible to implement SDR based on general-purpose PC and LAN. This paper gives a detailed introduction on how to implement a SDR receiver based on cluster computing. The cluster consists of a dozen of blade servers and several common servers, which are interconnected by gigabit ethernet. The software components of the SDR receiver, including analog signal sampling, data dispatching, load balance, demodulation, channel decoding, source decoding and user interface are presented in detail. Depending on the several key technologys such as parallel network data dispatching, efficient load balance and two-level parallel computing, the receiver can get a throughput up to 200 MB/s and process wireless signals with bandwidth up to 40 MHz in real time. Furthermore, the receiver can process multiple channel signals with different frequency, bandwidth, modulation type, channel coding and source coding at the same time. By using a special RF front-end and a commercial high speed A/D convertor, the receiver can receive different frequency RF signal and digitize at 70 MHz IF. Up to now, the receiver can demodulate AM, FM, PSK, QPSK, 8 PSK, 16 PSK, mQAM signals and decode various channel and source coding widely used.
Keywords :
software radio; telecommunication computing; workstation clusters; LAN; SDR receiver; analog signal sampling; channel decoding; cluster computing; data dispatching; demodulation; general purpose computer; general-purpose PC; gigabit Ethernet; load balancing; network communication technology; software defined radio receiver architecture; source decoding; user interface; Bandwidth; Computer architecture; Decoding; Dispatching; Frequency modulation; Network servers; Phase shift keying; Receivers; Signal processing; Software radio; A/D conversion; SDR; cluster computing; gigabit ethernet; load balance;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Grid and Cooperative Computing, 2008. GCC '08. Seventh International Conference on
Conference_Location :
Shenzhen
Print_ISBN :
978-0-7695-3449-7
Type :
conf
DOI :
10.1109/GCC.2008.58
Filename :
4662924
Link To Document :
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