DocumentCode
76630
Title
An Encoderless Predictive Torque Control for an Induction Machine With a Revised Prediction Model and EFOSMO
Author
Fengxiang Wang ; Zhenbin Zhang ; Alireza Davari, S. ; Fotouhi, Reza ; Arab Khaburi, Davood ; Rodriguez, Jose ; Kennel, Ralph
Author_Institution
Inst. for Electr. Drive Syst. & Power Electron., Tech. Univ. Muenchen, Munich, Germany
Volume
61
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
6635
Lastpage
6644
Abstract
The finite control state predictive torque control (FCS-PTC) method is known to produce a fast response. However, when compared with the direct torque control (DTC) method, which is inherently encoderless, the FCS-PTC method has a disadvantage because of its speed dependence. An encoderless FCS-PTC method that is based on a revised prediction model for an induction machine is proposed and experimentally verified in this paper. To observe the unmeasured variables, an encoderless full-order sliding-mode observer (EFOSMO) is applied. Neither the revised prediction model nor the EFOSMO uses the estimated rotor speed value. The disturbance injected by process of speed estimation in the usual encoderless predictive methods is removed from the system. The experimental results show that the proposed algorithm can work well and achieve good performance at a very wide range of speeds.
Keywords
asynchronous machines; observers; predictive control; rotors; torque control; variable structure systems; DTC method; EFOSMO; direct torque control; encoderless FCS-PTC method; encoderless full-order sliding-mode observer; encoderless predictive torque control; finite control state; induction machine; rotor speed value estimation; Induction machines; Mathematical model; Observers; Predictive control; Torque control; Encoderless control; induction machine (IM); predictive control;
fLanguage
English
Journal_Title
Industrial Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2014.2317140
Filename
6797863
Link To Document