Exponential convergence of shunting inhibitory cellular neural networks with continuously distributed delays

Qiyuan Zhou; Changhong Zhao

Annales Polonici Mathematici (2010)

  • Volume: 98, Issue: 3, page 241-250
  • ISSN: 0066-2216

Abstract

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We study delay shunting inhibitory cellular neural networks without almost periodic coefficients. Some sufficient conditions are established to ensure that all solutions of the networks converge exponentially to an almost periodic function. This complements previously known results.

How to cite

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Qiyuan Zhou, and Changhong Zhao. "Exponential convergence of shunting inhibitory cellular neural networks with continuously distributed delays." Annales Polonici Mathematici 98.3 (2010): 241-250. <http://eudml.org/doc/280469>.

@article{QiyuanZhou2010,
abstract = {We study delay shunting inhibitory cellular neural networks without almost periodic coefficients. Some sufficient conditions are established to ensure that all solutions of the networks converge exponentially to an almost periodic function. This complements previously known results.},
author = {Qiyuan Zhou, Changhong Zhao},
journal = {Annales Polonici Mathematici},
keywords = {cellular neural networks; exponential convergence; continuously distributed delays},
language = {eng},
number = {3},
pages = {241-250},
title = {Exponential convergence of shunting inhibitory cellular neural networks with continuously distributed delays},
url = {http://eudml.org/doc/280469},
volume = {98},
year = {2010},
}

TY - JOUR
AU - Qiyuan Zhou
AU - Changhong Zhao
TI - Exponential convergence of shunting inhibitory cellular neural networks with continuously distributed delays
JO - Annales Polonici Mathematici
PY - 2010
VL - 98
IS - 3
SP - 241
EP - 250
AB - We study delay shunting inhibitory cellular neural networks without almost periodic coefficients. Some sufficient conditions are established to ensure that all solutions of the networks converge exponentially to an almost periodic function. This complements previously known results.
LA - eng
KW - cellular neural networks; exponential convergence; continuously distributed delays
UR - http://eudml.org/doc/280469
ER -

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