DocumentCode
750468
Title
Analysis and design of a new voltage sag compensator for critical loads in electrical power distribution systems
Author
Aeloíza, Eddy C. ; Enjeti, Prasad N. ; Morán, Luis A. ; Montero-Hernandez, Oscar C. ; Kim, Sangsun
Author_Institution
Dept. of Electr. Eng., Texas A&M Univ., College Station, TX, USA
Volume
39
Issue
4
fYear
2003
Firstpage
1143
Lastpage
1150
Abstract
In this paper, a new voltage sag compensator for powering critical loads in electric distribution systems is discussed. The proposed scheme employs a pulsewidth-modulation AC-AC converter (four insulated gate bipolar transistors per phase) along with an autotransformer. During a disturbance such as voltage sag, the proposed scheme supplies the missing voltage and helps in maintaining rated voltage at the terminals of the critical load. The approach does not employ any energy storage components such as bulk capacitors/inductors and provides fast response at low cost. Under normal conditions the approach works in bypass mode, delivering utility power directly to the load; this method of control allows the transformer to be rated only for transient conditions, thus reducing its required size. A four-step switching technique to drive the AC-AC converter is employed to realize snubberless operation. A design example is presented, and simulation results are shown for a three-phase 230-V 5-kVA system. Experimental results on a single-phase unit are discussed. The proposed approach can be easily integrated into a distribution transformer supplying critical loads.
Keywords
AC-AC power convertors; PWM power convertors; autotransformers; compensation; energy storage; insulated gate bipolar transistors; power distribution faults; power supply quality; switching circuits; 1.5 kVA; 230 V; 5 kVA; autotransformer; bypass mode; critical loads; distribution transformer; electric distribution systems; electrical power distribution systems; energy storage components; insulated gate bipolar transistors; pulsewidth-modulation AC-AC converter; single-phase unit; snubberless operation; voltage sag; voltage sag compensator; Capacitors; Costs; Energy storage; Inductors; Insulated gate bipolar transistors; Power distribution; Power transformer insulation; Size control; Switching converters; Voltage fluctuations;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2003.813740
Filename
1215448
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