Title :
Output Feedback Control of Single-Phase UPQC Based on a Novel Model
Author :
Rong, Yuanjie ; Li, Chunwen ; Tang, Honghai ; Zheng, Xuesheng
Author_Institution :
Inst. of Technol., Tsinghua Univ., Beijing
fDate :
7/1/2009 12:00:00 AM
Abstract :
The single-phase unified power-quality conditioner can be treated as a typical switched linear system due to its typical switching dynamic characteristics. However, because the switched model is difficult for controller design, we first transform it to an equivalent discrete system model (EDSM) in light of the pulsewidth-modulation principle. The EDSM is further transformed to a linear equivalent discrete system model (LEDSM) by states reconstruction and linearization at some neighborhood of the equilibrium manifold. The LEDSM, where the pulsewidths are adopted as the controller variables, is a periodical discrete linear system with the constrained control. Since some states cannot be available, the output feedback periodical-switched controller is designed to meet suboptimal performance and stabilize the closed-loop system. Compared with the proportional-integral controller, the output feedback control strategy features better characteristics. The voltage reference for the series inverter is obtained by using an adaptive voltage detection method. Simultaneously based on the detected phase of the system voltage, the instantaneous reactive power theory is adopted to calculate the reference current for the shunt inverter. Additionally, the power flow and power consumption are described and analyzed. Simulation results demonstrate the effectiveness and reliability of the proposed control strategy.
Keywords :
PWM invertors; closed loop systems; discrete systems; linear systems; load flow control; power supply quality; power system control; reactive power; switching convertors; LEDSM; adaptive voltage detection method; closed-loop system; instantaneous reactive power theory; linear equivalent discrete system model; output feedback control; periodical-switched controller; power flow; pulsewidth-modulation principle; series inverter; shunt inverter; single-phase UPQC; typical switched linear system; unified power-quality conditioner; Control systems; Discrete transforms; Inverters; Lighting control; Linear systems; Output feedback; Pi control; Power quality; Power system modeling; Voltage; Equilibrium manifold; harmonic detection; output feedback; unified power-quality conditioner (UPQC);
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2009.2016802