DocumentCode :
3002633
Title :
A systolic discrete Fourier transform using residue number systems over the ring of Gaussian integers
Author :
Vaccaro, John J. ; Johnson, Bruce L. ; Nowacki, Carol L.
Author_Institution :
MITRE Corporation, Bedford, MA, USA
Volume :
11
fYear :
1986
fDate :
31503
Firstpage :
1157
Lastpage :
1160
Abstract :
A VLSI implementation of a bit-serial systolic architecture for a DFT processor has been developed which performs residue number system (RNS) processing over the ring of Gaussian integers. An architecture for a 128-point DFT using the chirp z-transform algorithm is described, and its use in an R2FFT architecture to obtain a 16,384-point transform is illustrated. Based on three custom-designed chips, the processor is capable of transforming data at a continuous 2 MHz rate. The use of RNS techniques and systolic arrays provides two dimensions of parallelism, resulting in hardware of low complexity and high speed. The overall system has great flexibility in dynamic range, and can be used in many signal processing applications.
Keywords :
Array signal processing; Chirp; Discrete Fourier transforms; Dynamic range; Hardware; Interference; Kernel; Signal processing algorithms; Signal resolution; Systolic arrays;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Acoustics, Speech, and Signal Processing, IEEE International Conference on ICASSP '86.
Type :
conf
DOI :
10.1109/ICASSP.1986.1168840
Filename :
1168840
Link To Document :
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