DocumentCode :
2371321
Title :
Speed and rotor flux estimation of induction motors via on-line adjusted Extended Kalman Filter
Author :
Alonge, Francesco ; Cangemi, Tommaso ; Ippolito, Filippo D. ; Giardina, Giuseppe
Author_Institution :
Dipartimento di Ingegneeria dell´´Automazione e dei Sistemi, Palermo Univ.
fYear :
2006
fDate :
6-10 Nov. 2006
Firstpage :
336
Lastpage :
341
Abstract :
This paper deals with the estimation of speed and rotor flux of induction motors via extended Kalman filter (EKF) with on-line adjusting of the system noise covariance matrix. The predictor of EKF consists of a discrete time model obtained by means of a second order discretization of the original nonlinear model of the induction motor. In order to obtain accurate estimation of the above mentioned variables, the load torque is included in the state variables and then estimated. Three different system noise models are also illustrated and compared each other by simulations carried out in Matlab/Simulink environment. For one of these models, EKF is adjusted on-line by means of an additional PID-type control loop driven by the stator current error which gives updates of the system noise covariance matrix
Keywords :
Kalman filters; covariance matrices; induction motors; machine control; magnetic flux; nonlinear filters; power filters; stators; three-term control; torque; Matlab; PID-type control; Simulink; discrete time model; induction motors; load torque; online adjusted extended Kalman filter; rotor flux estimation; second order discretization; speed estimation; stator current error; system noise covariance matrix; Covariance matrix; Error correction; Induction motors; Mathematical model; Predictive models; Rotors; State estimation; Stators; Torque; Working environment noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IEEE Industrial Electronics, IECON 2006 - 32nd Annual Conference on
Conference_Location :
Paris
ISSN :
1553-572X
Print_ISBN :
1-4244-0390-1
Type :
conf
DOI :
10.1109/IECON.2006.348088
Filename :
4153369
Link To Document :
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