Title :
Observer-Based Control Methods for Combined Source-Voltage Harmonics and Unbalance Disturbances in PWM Voltage-Source Converters
Author :
Lee, Kevin ; Jahns, Thomas M. ; Lipo, Thomas A. ; Blasko, Vladimir ; Lorenz, Robert D.
Author_Institution :
Innovation Center, Eaton Corp., Milwaukee, WI, USA
Abstract :
In this paper, computationally efficient sinusoidal-disturbance estimation and elimination methods are introduced into the control of an active front end (AFE) voltage-source converter (VSC) to achieve effective disturbance rejection in high power systems with slower pulsewidth-modulation switching frequencies (e.g., 5 kHz) and limited current-controller bandwidth. Since the active rectifier is in series with the source and the load, there is no need to add additional hardware for harmonic elimination. The input positive- and negative-sequence voltages are extracted using the new observer methods, and negative-sequence currents are injected to eliminate the dc-link 120-Hz ripple. The observer-based disturbance-rejection methods are proven to be very effective when all three types of disturbances (input-voltage harmonics, unbalance, and inductor unbalance) coexist simultaneously, even under input-inductance variations of 30%. Simulation results are verified experimentally using a 15-hp adjustable-speed-drive system that includes an AFE VSC coupled to a dSpace controller.
Keywords :
PWM power convertors; PWM rectifiers; electric current control; observers; power conversion harmonics; switching convertors; PWM voltage-source converter; active rectifier; adjustable-speed-drive system; current-controller bandwidth; negative-sequence current; observer-based control method; observer-based disturbance-rejection method; pulsewidth-modulation switching frequency; source-voltage harmonics disturbance elimination; Disturbance observer; power quality; pulsewidth-modulation (PWM) voltage-source converters; unbalance compensation; voltage harmonics;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2009.2031854