DocumentCode
2068644
Title
Parallel architecture for universal digital signal processing
Author
Jain, Vijay K. ; Hikawa, Hiroomi
Author_Institution
Dept. of Electr. Eng., Univ. of South Florida, Tampa, FL, USA
Volume
1
fYear
1994
fDate
4-7 Jan. 1994
Firstpage
114
Lastpage
123
Abstract
The paper describes a parallel architecture for universal digital signal processing. This architecture uses not only multiply-accumulate but also nonlinear operations, such as reciprocal, squareroot, exponential, sine/cosine, etc. Several advanced algorithms can thus be mapped to this array architecture. Specifically, the paper focuses attention on two very diverse algorithms, namely the fast Fourier transform and the matrix LU decomposition. Only two types of cells are used in the architecture; these are the Universal Multiply-Subtract-Add cell (UMSA) and the Universal Nonlinear cell (UNL). Both MA and nonlinear operations are performed in hardware, so that the operation times are on the order of chip-clock cycle times. The use of only two types of cells makes the architecture highly suitable for wafer scale integration. It is interesting to note that the same resources on the wafer are used for configuring it to either the FFT algorithm or the LU decomposition algorithm.<>
Keywords
fast Fourier transforms; parallel architectures; signal processing; LU decomposition algorithm; Universal Multiply-Subtract-Add cell; Universal Nonlinear cell; chip-clock cycle times; fast Fourier transform; multiply-accumulate; nonlinear operations; parallel architecture; universal digital signal processing; wafer scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
System Sciences, 1994. Proceedings of the Twenty-Seventh Hawaii International Conference on
Conference_Location
Wailea, HI, USA
Print_ISBN
0-8186-5090-7
Type
conf
DOI
10.1109/HICSS.1994.323179
Filename
323179
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