Title :
Improved DSP-controlled online UPS system with high real output power
Author :
Liang, T.-J. ; Shyu, J.-L.
Author_Institution :
Dept. of Electr. Eng., Nat. Cheng Kung Univ., Hsian, Taiwan
Abstract :
A circuit topology is proposed for single-phase online UPS systems. The proposed circuit incorporates a built-in bidirectional AC/DC converter, which provides power factor correction and active power filtering. The input stage, based on a bidirectional AC/DC converter, functions as a rectifier with unity power factor correction for normal AC line mode operation, and as an active power filter for outage mode operation. During input power failure, the bidirectional AC/DC converter functions as an active power filter, providing reactive power to the load. Simultaneously, the DC/AC voltage inverter output stage supplies real power from the battery bank to the critical load. The real power capability is improved compared with that of a conventional online UPS system, and extra loads can be connected to the UPS system during outage. The power circuit of the proposed UPS system is presented and analysed. Circuit models are derived and a UPS digital control system using a digital signal processor (DSP) is developed. Finally, simulated and experimental results obtained from a laboratory prototype are presented to confirm the feasibility and features of the proposed UPS scheme.
Keywords :
AC-DC power convertors; active filters; digital control; digital signal processing chips; electric current control; invertors; power factor correction; power filters; reactive power; rectifying circuits; uninterruptible power supplies; voltage control; AC line mode operation; DC/AC voltage inverter output stage; DSP-controlled online UPS system; active power filter; active power filtering; battery bank; built-in bidirectional AC/DC converter; critical load; digital control system; digital signal processor; high real output power; inner current controller; input power failure; input stage; outage mode operation; outer voltage controller; power circuit; power factor correction; rectifier; single-phase online UPS systems; unity power factor correction;
Journal_Title :
Electric Power Applications, IEE Proceedings -
DOI :
10.1049/ip-epa:20040020