DocumentCode :
151447
Title :
Finite state model predictive control for 3×3 matrix converter based on switching state elimination
Author :
Gulbudak, Ozan ; Santi, Enrico ; Marquart, Janosch
Author_Institution :
Dept. of Electr. Eng., Univ. of South Carolina, Columbia, SC, USA
fYear :
2014
fDate :
14-18 Sept. 2014
Firstpage :
5805
Lastpage :
5812
Abstract :
Model Predictive Control (MPC) with a finite control set has been successfully applied to several power converter topologies and research on predictive control techniques has increased over the last few years. This paper presents a novel model predictive control scheme for the three-phase Direct Matrix Converter based on switching state elimination. The conventional MPC solves a multi-objective optimization problem by minimizing a multi-objective cost function over a one-step horizon. The control performance is strongly affected by the weighting factors used in the cost function, and this is problematic, since no formal method to determine their values has been provided in the literature. A time consuming simulation-based tuning technique is typically used. The proposed method solves this difficulty by eliminating the weighting factors and using a switching state elimination method based on error constraints that have a clear physical interpretation.
Keywords :
cost reduction; error analysis; matrix convertors; minimisation; predictive control; switching; MPC; error constraints; finite state model predictive control performance; multiobjective cost function minimization; multiobjective optimization; one-step horizon; power converter topology; switching state elimination method; three-phase direct matrix converter; time consuming simulation-based tuning technique; weighting factor elimination; Cost function; Current control; Load modeling; Reactive power; Switches; Switching frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE
Conference_Location :
Pittsburgh, PA
Type :
conf
DOI :
10.1109/ECCE.2014.6954198
Filename :
6954198
Link To Document :
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