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2014 Neural Network Inverse Model Control Strategy: Discrete-Time Stability Analysis for Relative Order Two Systems
M. A. Hussain, Jarinah Mohd Ali, M. J. H. Khan
Abstr. Appl. Anal. 2014: 1-11 (2014). DOI: 10.1155/2014/645982

Abstract

This paper discusses the discrete-time stability analysis of a neural network inverse model control strategy for a relative order two nonlinear system. The analysis is done by representing the closed loop system in state space format and then analyzing the time derivative of the state trajectory using Lyapunov’s direct method. The analysis shows that the tracking output error of the states is confined to a ball in the neighborhood of the equilibrium point where the size of the ball is partly dependent on the accuracy of the neural network model acting as the controller. Simulation studies on the two-tank-in-series system were done to complement the stability analysis and to demonstrate some salient results of the study.

Citation

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M. A. Hussain. Jarinah Mohd Ali. M. J. H. Khan. "Neural Network Inverse Model Control Strategy: Discrete-Time Stability Analysis for Relative Order Two Systems." Abstr. Appl. Anal. 2014 1 - 11, 2014. https://doi.org/10.1155/2014/645982

Information

Published: 2014
First available in Project Euclid: 2 October 2014

zbMATH: 07022817
MathSciNet: MR3212440
Digital Object Identifier: 10.1155/2014/645982

Rights: Copyright © 2014 Hindawi

Vol.2014 • 2014
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