DocumentCode :
22017
Title :
Software tool for efficient FPGA design of direct data domain approach for space-time adaptive processing
Author :
Jarrah, Amin ; Jamali, Mohsin
Author_Institution :
EECS Dept., Univ. of Toledo, Toledo, OH, USA
Volume :
49
Issue :
13
fYear :
2013
fDate :
June 20 2013
Firstpage :
789
Lastpage :
791
Abstract :
Space-time adaptive processing algorithms have been proven to be a very effective way to mitigate the effects of multipath and interference. Due to the fast-changing clutter scenario, the stationary property of the data is destroyed and fails if the interference scenario ever becomes heterogeneous. Direct data domain (D3) methods can accommodate non-stationary data and can effectively suppress the clutter. However, the computation of D3 is very intensive. It is desirable to implement the D3 algorithm on a FPGA architecture for real-time applications. FPGAs can accommodate parallel and pipelined architecture. Here, the first FPGA design for the D3 algorithm and a new software package are presented. The software tool is capable of auto-generating a fully optimised VHDL representation of D3 and provides various performance parameters. The tool can be used by the designer to develop an overall system on chip (SoC) by using various constraints and options to meet certain performance criteria. Experimental results demonstrate that the authors´ hardware version of the D3 algorithm can significantly outperform an equivalent software version.
Keywords :
electronic engineering computing; field programmable gate arrays; hardware description languages; interference suppression; logic design; space-time adaptive processing; system-on-chip; D3 algorithm; FPGA design; SoC; data stationary property; direct data domain approach; fast-changing clutter scenario; fully optimissed VHDL representation; interference scenario; software tool; space-time adaptive processing algorithms; system on chip;
fLanguage :
English
Journal_Title :
Electronics Letters
Publisher :
iet
ISSN :
0013-5194
Type :
jour
DOI :
10.1049/el.2013.1307
Filename :
6553019
Link To Document :
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