Title :
A fuzzy controller based railway static power conditioner for AC traction
Author :
Joseph, Vineetha P. ; Thomas, Julian
Author_Institution :
Dept. of Electr. & Electron., Saintgits Coll. of Eng., Kottayam, India
Abstract :
The growing complexity of the electrified railway systems in terms of both new technologies and automation requires a careful control of power quality disturbances they cause; the disturbances depend upon the traction system structure. It creates power quality issues in the grid. Negative sequence and harmonic currents have become the main issues in high speed train traction systems. Railway static power conditioner (RPC) has been developed to mitigate the power quality issues. V/V traction transformer has been used for power supply to the traction. A Fuzzy Controller based comprehensive technique for compensation of negative sequence and harmonic currents have been discussed. RPC is a back to back connected converter with a dc link. The controller also provides a constant dc link voltage and thus helps in the compensation of power quality problem. Thus the control technique improves the power quality in railway traction.
Keywords :
fuzzy control; power conversion harmonics; power transformers; railway electrification; traction; AC traction; RPC; V/V traction transformer; back connected converter; constant dc link voltage; control technique; electrified railway system; fuzzy controller based comprehensive technique; harmonic current; high speed train traction system; negative sequence; power quality disturbance; power supply; railway static power conditioner; railway traction; traction system structure; Capacitors; Harmonic analysis; Power quality; Power system harmonics; Rail transportation; Reactive power; Voltage control; Harmonics; Negative sequence current; Power Quality; V/V transformer;
Conference_Titel :
Advanced Computing and Communication Systems (ICACCS), 2013 International Conference on
Conference_Location :
Coimbatore
DOI :
10.1109/ICACCS.2013.6938759