DocumentCode
2229624
Title
Design and Implementation of Digital Channelized Receiver in Multi-FPGA
Author
Xu Shichao ; Liu Guoman ; Gao Meiguo
Author_Institution
Radar Res. Lab., Beijing Inst. of Technol., Beijing, China
fYear
2009
fDate
26-28 Dec. 2009
Firstpage
178
Lastpage
181
Abstract
A method of parallel processing for digital channelized receiver to complex signal is proposed to solve the problem of shortage of resources in real-time signal processing. When complex signals go through poly-phase digital channelized receiver, in order to ensure there are non-blind spots and frequency aliasing, the maximum decimation factor per channel can only be half of the number of the channels. This directly increases the data that will be processed. In order to deal with this data in specific time, the processor needs more resources or higher processing speed. The paper takes full advantage of the decimate factor and analyses the law of the convolution in the non-blind spots digital channelized receiver. The filter bank structure is achieved by using two parallel computing modules. In this way, the digital channelized receiver can be achieved in several processors simultaneously. So, the resource problem is ameliorated by this parallel implementation. Experimental results proved that the proposed method performs well in distributing the processor´s resources and improving the characteristic of ultra-wideband channelized receiver, especially complex signals involved.
Keywords
channel bank filters; convolution; electronic warfare; field programmable gate arrays; parallel processing; radar receivers; resource allocation; complex signal; convolution; decimation factor; filter bank structure; frequency aliasing; multi-FPGA; nonblind spots; parallel computing module; parallel processing; poly-phase digital channelized receiver; processor resources; real-time signal processing; resource shortage; ultra-wideband channelized receiver; Band pass filters; Bandwidth; Costs; Digital filters; Digital signal processing; Filter bank; Frequency; Parallel processing; Radar signal processing; Signal processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Science and Engineering (ICISE), 2009 1st International Conference on
Conference_Location
Nanjing
Print_ISBN
978-1-4244-4909-5
Type
conf
DOI
10.1109/ICISE.2009.461
Filename
5455408
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