DocumentCode
267340
Title
Relationship between finite control set model predictive control and direct current control for three-phase voltage source converters
Author
Yongchang Zhang ; Qin Zhang
Author_Institution
Inverter Technol. Eng. Res. Center of Beijing, North China Univ. of Technol., Beijing, China
fYear
2014
fDate
5-8 Nov. 2014
Firstpage
831
Lastpage
836
Abstract
Predictive control is attracting more and more attention in the area of power converters and motor drives. Among various predictive control methods, finite control set model predictive control (FCSMPC) and direct current control (DCC) are two well-known approaches. FCSMPC is a powerful control method, because it takes the precise mathematical model into consideration and is easy to consider various constraints. However, FCSMPC requires large computation when calculating the cost function for each discrete switching state. DCC can solve this problem effectively. Only one prediction is required to select the best voltage vector in DCC. Despite the extensive publications regarding FCSMPC and DCC, no attempt has been made to reveal the inherent relationship between them. This paper fills this gap by investigating the advantages and limitations of each method, and what´s more, pointing out their equivalence in some cases. The theoretical analysis is confirmed by both simulation and experimental results from a two-level voltage source AC/DC voltage source converter (VSC).
Keywords
AC-DC power convertors; electric current control; mathematical analysis; predictive control; switching convertors; DCC; FCSMPC; VSC; cost function calculation; direct current control; discrete switching state; finite control set model; mathematical model; motor drive; predictive control method; three-phase voltage source converter; two-level voltage source AC-DC voltage source converter; voltage vector; Power conversion; Vectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location
Shanghai
Type
conf
DOI
10.1109/PEAC.2014.7037966
Filename
7037966
Link To Document