DocumentCode
791676
Title
Realization of Boolean Functions via CNN: Mathematical Theory, LSBF and Template Design
Author
Chen, Fangyue ; He, Guolong ; Chen, Guanrong
Author_Institution
Dept. of Math., Zhejiang Normal Univ.
Volume
53
Issue
10
fYear
2006
Firstpage
2203
Lastpage
2213
Abstract
As a paradigm for nonlinear spatial-temporal processing, cellular nonlinear networks (CNN) are biologically inspired systems where computation emerges from a collection of simple locally coupled nonlinear cells. Our investigation is an exploration of an important and difficult aspect of implementing arbitrary Boolean functions by using CNN. A typical class of basic key Boolean functions is the class of linearly separable ones. In this paper, we focus on establishing a complete set of mathematical theories for the linearly separable Boolean functions (LSBF) that are identical to a class of uncoupled CNN. First, we obtain an essential relationship between the template and the offset levels as well as the basis of the binary input vector set in the uncoupled CNN. More precisely, we construct a neat binary input-output truth table and some interesting properties of the offset levels of the uncoupled CNN, and develop a practical design formula for the class of CNN template. Especially, we found a criterion for LSBF, which depends only on symbolic relations between a Boolean function´s outputs. Furthermore, we develop a method for representing any linearly nonseparable Boolean function into a logic operation of a sequence of linearly separable ones for a small number of inputs
Keywords
Boolean functions; cellular neural nets; biologically inspired systems; cellular nonlinear networks; linearly separable Boolean functions; mathematical theory; template design; truth table; Analog computers; Biology computing; Boolean functions; Cellular networks; Cellular neural networks; Control systems; Couplings; Helium; Logic; Nonlinear equations; Binary input–output truth table; cellular nonlinear network (CNN); linearly nonseparable Boolean function; linearly separable Boolean function (LSBF); template design;
fLanguage
English
Journal_Title
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher
ieee
ISSN
1549-8328
Type
jour
DOI
10.1109/TCSI.2006.883845
Filename
1710200
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