Disturbance-observer-based model predictive control for output voltage regulation of three-phase inverter for uninterruptible-power-supply applications

Citations

WEB OF SCIENCE

38

초록

In this paper, an offset-free model predictive control (MPC) method is suggested for regulating the output voltage of a three-phase inverter for an uninterruptible power supply (UPS) application through the multivariable design approach. A reference state, which satisfies the control objective of output voltage regulation, is derived. In addition, a one-step-ahead cost index penalizing the state tracking error is used by the proposed MPC. A disturbance observer (DOB) is used to compensate for the errors caused by uncertainties. Online optimization considering the input constraint of the inverter system is very simple, and no numerical method is required. It is shown that the proposed MPC makes the closed-loop system globally asymptotically stable in the presence of input constraints. The closed-loop performance is experimentally evaluated when resistive and resistive-inductive loads are used. (C) 2015 European Control Association. Published by Elsevier Ltd. All rights reserved.

키워드

Three-phase inverterInput constraintsModel predictive controlDisturbance observerUPSDESIGNSINGLE
제목
Disturbance-observer-based model predictive control for output voltage regulation of three-phase inverter for uninterruptible-power-supply applications
저자
Kim, Seok-KyoonPark, Chang ReungYoon, Tae-WoongLee, Young Il
DOI
10.1016/j.ejcon.2015.02.004
발행일
2015-05
유형
Article
저널명
European Journal of Control
23
페이지
71 ~ 83