DocumentCode
3150090
Title
Computationally efficient fast algorithm and architecture for the IFFT/FFT in DMT/OFDM systems
Author
Wu, An-Yeu ; Chan, T.-S.
Author_Institution
Dept. of Electr. Eng., Nat. Central Univ., Chung-Li, Taiwan
fYear
1998
fDate
8-10 Oct 1998
Firstpage
356
Lastpage
365
Abstract
The discrete multitone (DMT) modulation/demodulation scheme is the standard transmission technique in the application of asymmetric digital subscriber lines (ADSL). Although the DMT can achieve rate-adaptive data transmission compared with other modulation/demodulation schemes, its computational complexity is too high for cost-efficient implementations. For example, it requires 512-point IFFT/FFT as the modulation/demodulation kernel. The large block size results in heavy computational load in running programmable digital signal processors (DSP). We derive a computationally efficient fast algorithm for the IFFT/FFT. The proposed algorithm requires only 22% of the multiplications needed with the conventional butterfly approach. Also, it can avoid complex-domain operations that are inevitable in conventional IFFT/FFT computation. The resulting software function requires less MIPS count and program storage in firmware development of the IFFT/FFT module. Hence, it is very suitable for DSP-based DMT implementation. The proposed algorithm can also be applied to the technology of orthogonal frequency division multiplexing (OFDM) which is the processing kernel of the digital audio/video broadcasting (DAB/DVB) systems
Keywords
OFDM modulation; computational complexity; data communication; demodulation; digital audio broadcasting; digital signal processing chips; digital subscriber lines; digital video broadcasting; fast Fourier transforms; ADSL; DAB/DVB; DMT/OFDM systems; DSP; IFFT/FFT; asymmetric digital subscriber lines; computational complexity; digital audio/video broadcasting; discrete multitone modulation/demodulation; orthogonal frequency division multiplexing; programmable digital signal processors; rate-adaptive data transmission; Computational complexity; Computer architecture; DSL; Data communication; Demodulation; Digital modulation; Digital video broadcasting; Kernel; OFDM modulation; Signal processing algorithms;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing Systems, 1998. SIPS 98. 1998 IEEE Workshop on
Conference_Location
Cambridge, MA
ISSN
1520-6130
Print_ISBN
0-7803-4997-0
Type
conf
DOI
10.1109/SIPS.1998.715798
Filename
715798
Link To Document