Title :
Limit Set Dichotomy and Convergence of Cooperative Piecewise Linear Neural Networks
Author :
Marco, Mauro Di ; Forti, Mauro ; Grazzini, Massimo ; Pancioni, Luca
Author_Institution :
Dipt. di Ing. dell´´Inf., Univ. di Siena, Siena, Italy
fDate :
5/1/2011 12:00:00 AM
Abstract :
This paper considers a class of nonsymmetric cooperative neural networks (NNs) where the neurons are fully interconnected and the neuron activations are modeled by piecewise linear (PL) functions. The solution semiflow generated by cooperative PLNNs is monotone but, due to the horizontal segments in the neuron activations, is not eventually strongly monotone (ESM). The main result in this paper is that it is possible to prove a peculiar form of the Limit Set Dichotomy for this class of cooperative PLNNs. Such a form is slightly weaker than the standard form valid for ESM semiflows, but this notwithstanding it permits to establish a result on convergence analogous to that valid for ESM semiflows. Namely, for almost every choice of the initial conditions, each solution of a fully interconnected cooperative PLNN converges toward an equilibrium point, depending on the initial conditions, as t → +∞. From a methodological viewpoint, this paper extends some basic techniques and tools valid for ESM semiflows, in order that they can be applied to the monotone semiflows generated by the considered class of cooperative PLNNs.
Keywords :
integrated circuit interconnections; neural chips; piecewise linear techniques; set theory; ESM semiflow; cooperative piecewise linear neural network; equilibrium point; fully interconnected cooperative PLNN; limit set dichotomy; monotone semiflow; neuron activation; nonsymmetric cooperative neural network; piecewise linear function; Artificial neural networks; Associative memory; Convergence; Differential equations; Extraterrestrial measurements; Integrated circuit interconnections; Neurons; Convergence; cooperative neural networks; dynamical systems; limit set dichotomy; monotone and eventually strongly monotone semiflows;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2010.2091194