DocumentCode
1229369
Title
An improved deadbeat control for UPS using disturbance observers
Author
Mattavelli, Paolo
Author_Institution
Dept. of Electr., Univ. of Udine, Italy
Volume
52
Issue
1
fYear
2005
Firstpage
206
Lastpage
212
Abstract
A digital control technique for the inverter stage of uninterruptible power supplies is proposed, which is based on a predictive regulator on both output voltage and inductor current. Its aim is to achieve a deadbeat dynamic response for the controlled variables (output voltage and inverter current). Besides the linear state feedback which allocates system poles at the origin so as to achieve deadbeat response for all state variables, the use of a disturbance observer for the estimation of the load current and of any other source of errors (such as dead-times, parameter, and model mismatches) is investigated. The proposed solution is able to guarantee a fast dynamic response and also a precise compensation of any source of unpredictable disturbance. Moreover, with a proper design of observer parameters, it is possible to reduce control sensitivity to model uncertainties, parameter mismatches, and noise on sensed variables, which usually characterizes existing deadbeat control techniques. Finally, the control algorithm is quite simple and requires only the measurements of the output voltage and inductor current. Experimental results on a single-phase 2 kVA prototype show the effectiveness of the proposed approach.
Keywords
digital control; dynamic response; electric current control; invertors; observers; predictive control; state feedback; uninterruptible power supplies; voltage control; 2 kVA; UPS; deadbeat control; deadbeat dynamic response; digital control; disturbance observer; inductor current; inverter stage; linear state feedback; load current estimation; output voltage control; parameter mismatch; predictive regulator; sensed variable noise; state variables; uninterruptible power supplies; Digital control; Inductors; Inverters; Noise reduction; Observers; Regulators; State estimation; State feedback; Uninterruptible power systems; Voltage control;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2004.837912
Filename
1391109
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