Title :
Advanced control scheme for a single-phase PWM rectifier in traction applications
Author :
Song, Hong-Seok ; Keil, Roger ; Mutschler, Peter ; van der Weem, J. ; Nam, Kwanghee
Abstract :
This work presents an advanced control scheme for a single-phase PWM rectifier. The controller consists of a PR (proportional-resonant) controller using the double sampling strategy, namely, a dual update scheme, a delayless feed-forward compensator, and a fast phase angle estimator. The PR controller is capable of regulating a sinusoidal line current without an additional prediction or an extremely high control gain under a medium switching frequency (0.5-5 kHz). The dual update scheme is the method that performs the sampling and control calculation twice in a switching period, which reduces the control time delay significantly and enables us to extend the maximum allowable control bandwidth. The proposed feed-forward compensator uses the estimated one-step predicted value of the source voltage and the source current to avoid adverse effects caused by the one-step delay, measurement noise, and harmonic component of the source voltage in the feedforward compensation process. A fast phase angle estimator is also presented, which is capable of estimating the phase angle and the frequency of the source voltage even under a highly distorted source voltage condition or a sudden amplitude, phase angle, or frequency changing condition. The feasibility of the proposed control scheme is confirmed by experiments.
Keywords :
PWM power convertors; compensation; electric current control; feedforward; parameter estimation; power conversion harmonics; rectifying circuits; switching convertors; traction; 0.5 to 5 kHz; adverse effects avoidance; control bandwidth; control calculation; control scheme; current controller; delayless feed-forward compensator; double sampling strategy; dual update scheme; fast phase angle estimator; feed-forward compensator; feedforward compensation; frequency changing condition; harmonic component; highly distorted source voltage condition; least-squares estimation; measurement noise; medium switching frequency; one-step delay; one-step predicted value; proportional-resonant controller; sampling; single-phase PWM rectifier; sinusoidal line current; source current; source voltage; switching period; traction applications; Delay effects; Delay estimation; Feedforward systems; Frequency estimation; Phase estimation; Proportional control; Pulse width modulation; Rectifiers; Sampling methods; Voltage;
Conference_Titel :
Industry Applications Conference, 2003. 38th IAS Annual Meeting. Conference Record of the
Print_ISBN :
0-7803-7883-0
DOI :
10.1109/IAS.2003.1257763