In this paper, we presented a self-tuning control algorithm based on a three layers perceptron type neural network. The proposed algorithm is advantageous in the sense that practically a previous training of the net is not required and some changes in the set-point are generally enough to adjust the learning coefficient. Optionally, it is possible to introduce a self-tuning mechanism of the learning coefficient although by the moment it is not possible to give final conclusions about this possibility. The proposed algorithm has the special feature that the regulation error instead of the net output error is retropropagated for the weighting coefficients modifications.
In this work a practical study evaluates two parametric modelling approaches -- linear and non-linea...
The paper investigates the possibility of using a simple approximation for evaluating the error whic...
It is critical that modern control theory techniques be integrated into assignments which involve th...
In this paper, we presented a self-tuning control algorithm based on a three layers perceptron type ...
This paper is about synthesis quasi-optimal control system in uncertain conditions with neural netwo...
This paper is about synthesis quasi-optimal control system in uncertain conditions with neural netwo...
The main theme of research of this project concerns the study of neutral networks to control uncerta...
Single layer feedforward neural networks with hidden nodes of adaptive wavelet functions (wavenets) ...
A neural network enhanced proportional, integral and derivative (PID) controller is presented that c...
A very important problem in designing of controlling systems is to choose the right type of architec...
Abstract: In this paper a new technique is proposed to design an online control algorithm using the ...
A neural network enhanced self-tuning controller is presented, which combines the attributes of neur...
A neural network enhanced self-tuning controller is presented, which combines the attributes of neur...
A neural network enhanced self-tuning controller is presented, which combines the attributes of neur...
ABSTRACT: Neural networks can be used to solve highly nonlinear control problems. This paper shows h...
In this work a practical study evaluates two parametric modelling approaches -- linear and non-linea...
The paper investigates the possibility of using a simple approximation for evaluating the error whic...
It is critical that modern control theory techniques be integrated into assignments which involve th...
In this paper, we presented a self-tuning control algorithm based on a three layers perceptron type ...
This paper is about synthesis quasi-optimal control system in uncertain conditions with neural netwo...
This paper is about synthesis quasi-optimal control system in uncertain conditions with neural netwo...
The main theme of research of this project concerns the study of neutral networks to control uncerta...
Single layer feedforward neural networks with hidden nodes of adaptive wavelet functions (wavenets) ...
A neural network enhanced proportional, integral and derivative (PID) controller is presented that c...
A very important problem in designing of controlling systems is to choose the right type of architec...
Abstract: In this paper a new technique is proposed to design an online control algorithm using the ...
A neural network enhanced self-tuning controller is presented, which combines the attributes of neur...
A neural network enhanced self-tuning controller is presented, which combines the attributes of neur...
A neural network enhanced self-tuning controller is presented, which combines the attributes of neur...
ABSTRACT: Neural networks can be used to solve highly nonlinear control problems. This paper shows h...
In this work a practical study evaluates two parametric modelling approaches -- linear and non-linea...
The paper investigates the possibility of using a simple approximation for evaluating the error whic...
It is critical that modern control theory techniques be integrated into assignments which involve th...