Title :
Practical Control Implementation of a Three- to Single-Phase Online UPS
Author :
Kim, Eung-Ho ; Kwon, Jung-Min ; Park, Jae-Kyu ; Kwon, Bong-Hwan
Author_Institution :
Dept. of Electron. & Electr. Eng., Pohang Univ. of Sci. & Technol., Pohang
Abstract :
A high-performance three- to single-phase online uninterruptible power supply (UPS) is proposed. The proposed UPS is composed of a rectifier, a battery charger/discharger, and an inverter. The rectifier has the capability of power-factor correction and regulates a DC-link voltage. When the rectifier becomes unavailable or when the current required by the load exceeds the output rating of the rectifier, the charger/discharger supplies the power demanded by the load to a DC-link capacitor. The inverter provides a regulated sinusoidal output voltage and limits an output current under an impulsive load. New control algorithms of the rectifier, the charger/discharger, and the inverter are proposed. The proposed algorithms of the rectifier and the charger/discharger improve dynamic performance at step load change. To improve the transient response of the output voltage at outage of an input source, a mode change method of the charger/discharger is also proposed. Additionally, the proposed current-limit algorithm of the inverter can be implemented without additional hardware, and it increases the reliability of the UPS.
Keywords :
invertors; machine control; power capacitors; power factor correction; rectifying circuits; reliability; transient response; uninterruptible power supplies; DC-link capacitor; DC-link voltage; battery charger-discharger; control algorithms; current-limit algorithm; impulsive load; inverter; mode change method; power-factor correction; rectifier; sinusoidal output voltage; three-single-phase online UPS; transient response; uninterruptible power supply; Adaptive gain control; On-line UPS; adaptive gain control; charger/discharger; current-limiting technique; online uninterruptible power supply (UPS); power factor correction; power-factor correction (PFC);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2008.918476