Title :
Simulation studies with a continuously online trained artificial neural network controller for a micro-turbogenerator
Author :
Venayagamoorthy, G.K. ; Harley, R.G.
Author_Institution :
Natal Univ., South Africa
fDate :
30 Sep-2 Oct 1998
Abstract :
This paper reports on the simulation studies carried out using MATLAB/SIMULINK and the practical implementation of a continuously online trained (COT) artificial neural network (ANN) controller to identify the continuous changing complex nonlinear dynamics of the power system, and another COT ANN to control a micro-turbogenerator which consists of a turbine simulator and a micro-alternator connected to an infinite bus through a short transmission line in a laboratory environment. This neural network controller augments/replaces the traditional automatic voltage regulator (AVR) and the turbine governor of the generator. Simulation and practical results are presented to show that this COT ANN identifier/controller has the potential to allow turbogenerators to operate more closely to their steady state stability limits
Keywords :
neurocontrollers; MATLAB; SIMULINK; artificial neural network controller; automatic voltage regulator; complex nonlinear dynamics; continuously online trained network; infinite bus; micro-alternator; micro-turbogenerator; power system; simulation; steady state stability limits; transmission line; turbine governor; turbine simulator;
Conference_Titel :
Simulation '98. International Conference on (Conf. Publ. No. 457)
Conference_Location :
York
Print_ISBN :
0-85296-709-8
DOI :
10.1049/cp:19980671