DocumentCode
2619254
Title
The effect of the digit slicing architecture on the FFT butterfly
Author
Samir, Yazan ; Teymourzadeh, Rozita
Author_Institution
Dept. of Electr. & Electron., Univ. Kebangsaan Malaysia, Bangi, Malaysia
fYear
2010
fDate
10-13 May 2010
Firstpage
802
Lastpage
805
Abstract
Most communications systems tend to achieve bandwidth, power and cost efficiencies to capable to describe modulation scheme. Hence for signal modulation orthogonal frequency division multiplexing (OFDM) transceiver is introduced to cover communications demand in four generation. However high performance Fast Fourier Transforms (FFT) as a main heart of OFDM acts beyond the view. In order to achieve capable FFT, design and realization of its efficient internal structure is key issues of this research work. In this paper implementation of high performance butterfly for FFT by applying digit slicing technique is presented. The proposed design focused on the trade-off between the speed and active silicon area for the chip implementation. The new architecture was investigated and simulated with the MATLAB software. The Verilog HDL code in Xilinx ISE environment was derived to describe the FFT Butterfly functionality and was downloaded to Virtex II FPGA board.
Keywords
OFDM modulation; fast Fourier transforms; field programmable gate arrays; signal processing; transceivers; FFT butterfly functionality; MATLAB software; OFDM transceiver; Verilog HDL code; Virtex II FPGA board; Xilinx ISE environment; communications systems; digit slicing architecture technique; high performance fast Fourier transforms; signal modulation orthogonal frequency division multiplexing; Computer architecture; Hardware; Logic gates; Read only memory; Digit-Slicing technique; Fast Fourier Transform (FFT); Verilog HDL; Xilinx;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Sciences Signal Processing and their Applications (ISSPA), 2010 10th International Conference on
Conference_Location
Kuala Lumpur
Print_ISBN
978-1-4244-7165-2
Type
conf
DOI
10.1109/ISSPA.2010.5605507
Filename
5605507
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