bibtype |
J -
Journal Article
|
ARLID |
0422285 |
utime |
20240103203556.9 |
mtime |
20140129235959.9 |
title
(primary) (eng) |
Mathematical Modelling and Predictive Control of Permanent Magnet Synchronous Motor Drives |
specification |
page_count |
7 s. |
media_type |
P |
|
serial |
ARLID |
cav_un_epca*0384523 |
ISSN |
Transactions on Electrical Engineering |
title
|
Transactions on Electrical Engineering |
volume_id |
2 |
volume |
4 (2013) |
page_num |
114-120 |
publisher |
|
|
keyword |
Permanent magnet synchronous motor |
keyword |
mathematical modelling |
keyword |
discrete predictive control |
keyword |
multistep explicit control law |
keyword |
square-root optimization |
author
(primary) |
ARLID |
cav_un_auth*0101064 |
name1 |
Belda |
name2 |
Květoslav |
full_dept (cz) |
Adaptivní systémy |
full_dept (eng) |
Department of Adaptive Systems |
department (cz) |
AS |
department (eng) |
AS |
institution |
UTIA-B |
full_dept |
Department of Adaptive Systems |
fullinstit |
Ústav teorie informace a automatizace AV ČR, v. v. i. |
|
source |
|
cas_special |
project |
project_id |
GAP102/11/0437 |
agency |
GA ČR |
country |
CZ |
ARLID |
cav_un_auth*0273082 |
|
abstract
(eng) |
The paper deals with a mathematical modelling of the three-phase Permanent Magnet Synchronous Motors (PMSM) and their model-based control. These motors are used in drives of robots and achine tools. The construction of their mathematical model is discussed here with respect to a model-based control design. The model is composed via mathematical-physical analysis. The analysis is outlined in the main theoretical points. As a promising model-based approach, the predictive control is explained. It represents just a promising alternative to the standard solution based on the vector cascade control. |
reportyear |
2014 |
RIV |
BC |
num_of_auth |
1 |
inst_support |
RVO:67985556 |
permalink |
http://hdl.handle.net/11104/0230622 |
arlyear |
2013 |
mrcbU63 |
cav_un_epca*0384523 Transactions on Electrical Engineering 1805-3386 Roč. 2 č. 4 2013 114 120 Ergo Nomen |
|