DocumentCode :
34183
Title :
Robust Tracking Control of a Three-Phase DC–AC Inverter for UPS Applications
Author :
Jae Sik Lim ; Changreung Park ; Jungho Han ; Young Il Lee
Author_Institution :
Electr. Propulsion Res. Div., Korea Electrotechnol. Res. Inst., Changwon, South Korea
Volume :
61
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
4142
Lastpage :
4151
Abstract :
This paper describes a combination of robust control techniques applied to an offset-free robust tracking control of a three-phase dc-ac inverter with an output LC filter for application to uninterruptible power supply (UPS). The control law, which employs state feedback and integration of the tracking error, is described in a synchronous dq frame and is implemented using a space vector modulation technique. The controller is designed by a linear matrix inequality (LMI)-based optimization so that the convergence rate to the steady state is maximized in the presence of the uncertainties in the LC filter. These uncertainties are expressed as possible ranges of the capacitor and inductor values. In the absence of uncertainties, the designed controller will become a deadbeat controller, whereas in the presence of uncertainties, it provides the shortest possible settling time. Thus, the proposed design method provides a systematic tool to combine the robustness to model uncertainties with the deadbeat control. The use of a one-step-ahead predictor is considered to compensate for the computation delay, and an LMI-based method to obtain an optimal gain of the state estimator is also proposed. The efficacy of the proposed approach was experimentally confirmed on a three-phase 10-kVA prototype UPS system.
Keywords :
DC-AC power convertors; invertors; linear matrix inequalities; power capacitors; power inductors; uninterruptible power supplies; LC filter; LMI; UPS; capacitor; deadbeat controller; inductor; linear matrix inequality; offset-free robust tracking control; space vector modulation; three-phase DC-AC inverter; tracking error; uninterruptible power supply; Capacitors; Inverters; Optimization; Robustness; Uncertainty; Uninterruptible power systems; Voltage measurement; DC–AC inverter; linear matrix inequality (LMI); one-step-ahead predictor; parameter uncertainties; robust control; uninterruptible power supply (UPS);
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2013.2284155
Filename :
6616573
Link To Document :
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