Title :
Neural learning algorithm based power quality enhancement for three phase three wire distribution system utilizing shunt active power filter strategy
Author :
Kumar, A. Shraban ; Raj, P. Ajay-D-Vimal
Author_Institution :
Dept. of Electr. & Electron. Eng, Pondicherry Eng. Coll., Puducherry, India
Abstract :
This paper explores the application of artificial intelligence on solving the power quality problems by using the shunt active power filter strategy for three phase three wire distribution system. The unit vector template generation control technique is modeled as current controller for the shunt active power filter strategy. The proportional and integral (PI) controller is designed to minimize error between the actual and the reference DC voltage of shunt active power filter strategy. The transient period and peak overshoot of DC bus voltage using a PI controller is observed to be higher in initial and load change conditions. The artificial neural network is a powerful tool used to generate the current signal with very low oscillation and faster settling time. In this paper, a new neural learning algorithm (NAL) is proposed for the current controller of the shunt active power filter strategy. The performance of the proposed neural learning algorithm is extensively analyzed of diode rectifier RL non linear load with respect to two different operating conditions. The proposed system is designed with MATLAB/Simulink environment.
Keywords :
PI control; control system synthesis; electric current control; harmonic distortion; learning (artificial intelligence); neurocontrollers; power distribution control; power factor; power filters; quality management; reactive power control; rectifiers; DC bus voltage; MATLAB-Simulink environment; PI controller; artificial intelligence; current controller; current signal generation; diode rectifier RL nonlinear load; error minimization; load change condition; neural learning algorithm-based power quality enhancement; proportional and integral controller design; shunt active power filter strategy; three phase three wire distribution system; unit vector template generation control technique; Active filters; Harmonic analysis; Joining processes; Power harmonic filters; Power quality; Reactive power; Voltage control; Neural Learning Algorithm; Power Factor; Power Quality; Reactive Power; Real Power; Total Harmonic Distortion; True Power;
Conference_Titel :
Power and Energy Systems (ICPS), 2011 International Conference on
Conference_Location :
Chennai
Print_ISBN :
INAVLID ISBN
DOI :
10.1109/ICPES.2011.6156667