DocumentCode :
737972
Title :
Proposal of Three-Phase High-Frequency Transformer Isolation UPS Topologies for Distributed Generation Applications
Author :
Branco, Carlos G C ; Torrico-Bascopé, René P. ; Cruz, Cícero M T ; de A Lima, Francisco K.
Author_Institution :
Energy Process. & Control Group, Fed. Univ. of Ceara, Ceará, Brazil
Volume :
60
Issue :
4
fYear :
2013
fDate :
4/1/2013 12:00:00 AM
Firstpage :
1520
Lastpage :
1531
Abstract :
A family of double-conversion three-phase uninterruptible power systems with power factor correction and high-frequency transformer (HFT) isolation topologies are presented in this paper. This might be a suitable alternative compared to large conventional uninterruptible power systems (UPSs) that are based upon bulky transformers that operate at the grid frequency. This system is commonly used to supply critical loads, but nowadays, due to the increasing interest in renewable energy integration and distributed generation (DG), it can also be a suitable solution for energy storage in microgrids or renewable-power-conditioning interface applications. The three-phase HFT UPS used for further analysis is composed of single-phase chopper modules, one three-phase boost module, and one three-phase inverter. The relevant features are soft commutation of the controlled switches in the chopper stage, simple control strategy that can be implemented with well-known integrated circuits, and the use of a few batteries in series due to the same reference of the step-up stages. The principle of operation of the chosen system for experimental validation, the implemented control strategy, and the experimental results obtained for a 15-kVA prototype are presented.
Keywords :
choppers (circuits); commutation; distributed power generation; energy storage; high-frequency transformers; integrated circuits; invertors; power factor correction; power generation control; switches; uninterruptible power supplies; DG; HFT isolation UPS topologies; batteries; controlled switches; distributed generation application; double-conversion three-phase uninterruptible power system; energy storage; grid frequency; integrated circuits; loads; microgrids; power factor correction; renewable energy integration; renewable-power-conditioning interface applications; single-phase chopper modules; three-phase boost module; three-phase high-frequency transformer isolation; three-phase inverter; Batteries; Choppers (circuits); Inverters; Proposals; Rectifiers; Topology; Uninterruptible power systems; Distributed generation (DG); high-frequency transformer (HFT) isolation; power factor correction (PFC); three-phase uninterruptible power supply;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2012.2193858
Filename :
6179525
Link To Document :
بازگشت