You can manage bookmarks using lists, please log in to your user account for this.
Media type:
E-Article
Title:
Convergence of Neural Networks with a Class of Real Memristors with Rectifying Characteristics
Contributor:
Di Marco, Mauro;
Forti, Mauro;
Moretti, Riccardo;
Pancioni, Luca;
Tesi, Alberto
Published:
MDPI AG, 2022
Published in:
Mathematics, 10 (2022) 21, Seite 4024
Language:
English
DOI:
10.3390/math10214024
ISSN:
2227-7390
Origination:
Footnote:
Description:
The paper considers a neural network with a class of real extended memristors obtained via the parallel connection of an ideal memristor and a nonlinear resistor. The resistor has the same rectifying characteristic for the current as that used in relevant models in the literature to account for diode-like effects at the interface between the memristor metal and insulating material. The paper proves some fundamental results on the trajectory convergence of this class of real memristor neural networks under the assumption that the interconnection matrix satisfies some symmetry conditions. First of all, the paper shows that, while in the case of neural networks with ideal memristors, it is possible to explicitly find functions of the state variables that are invariants of motions, the same functions can be used as Lyapunov functions that decrease along the trajectories in the case of real memristors with rectifying characteristics. This fundamental property is then used to study convergence by means of a reduction-of-order technique in combination with a Lyapunov approach. The theoretical predictions are verified via numerical simulations, and the convergence results are illustrated via the applications of real memristor neural networks to the solution of some image processing tasks in real time.