Detail publikačního výsledku

MODEL PREDICTIVE CURRENT CONTROLLER OF INDUCTION MACHINE

ZÁMEČNÍK, D.; VESELÝ, I.

Originální název

MODEL PREDICTIVE CURRENT CONTROLLER OF INDUCTION MACHINE

Anglický název

MODEL PREDICTIVE CURRENT CONTROLLER OF INDUCTION MACHINE

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

Model Predictive Control (MPC) is a modern approach belonging to the group of "long range predictive control" which enables control system taking into account in system manner constraints given by physical limitations. The state of art in most drive applications in industry is the Field Oriented Control (FOC). This paper deals with MPC controller replacing PI controllers in the current loop of the FOC cascade structure. Matlab/Simulink environment was used for carrying out simulations on the model of induction machine.

Anglický abstrakt

Model Predictive Control (MPC) is a modern approach belonging to the group of "long range predictive control" which enables control system taking into account in system manner constraints given by physical limitations. The state of art in most drive applications in industry is the Field Oriented Control (FOC). This paper deals with MPC controller replacing PI controllers in the current loop of the FOC cascade structure. Matlab/Simulink environment was used for carrying out simulations on the model of induction machine.

Klíčová slova

model predictive control, induction machine

Klíčová slova v angličtině

model predictive control, induction machine

Autoři

ZÁMEČNÍK, D.; VESELÝ, I.

Rok RIV

2012

Vydáno

27.06.2011

ISSN

1802-4564

Periodikum

ElectroScope - http://www.electroscope.zcu.cz

Svazek

2011

Číslo

2

Stát

Česká republika

Strany od

1

Strany do

5

Strany počet

5

BibTex

@article{BUT72448,
  author="Dušan {Zámečník} and Ivo {Veselý}",
  title="MODEL PREDICTIVE CURRENT CONTROLLER OF INDUCTION MACHINE",
  journal="ElectroScope - http://www.electroscope.zcu.cz",
  year="2011",
  volume="2011",
  number="2",
  pages="1--5",
  issn="1802-4564"
}