Title :
Design of a double manifold Sliding Mode observer for speed and state estimation of the induction motor
Author :
Kachkovskiy, V. ; Comanescu, Mihai
Author_Institution :
Penn State Altoona, Altoona, PA, USA
Abstract :
The paper discusses the problem of speed and state estimation for the induction motor (IM) drive and presents a double-manifold Sliding Mode observer. This is obtained by adding extra feedback terms to a single-manifold observer design. Both designs are based on the model of the IM in the stationary reference frame. The observer uses compound manifolds which are constructed as a combination of the estimated states and mismatches. Observers with compound manifolds have not been widely investigated because they cannot be designed using a standard procedure; however, they may have very interesting properties. The paper investigates the behavior of a single-manifold observer first; it is shown that this only converges partially and provides an approximate speed estimate. Based on this, a double-manifold observer is designed. This estimates the fluxes, drives the current mismatches to zero and yields an accurate speed estimate. The method is applicable in a sensorless IM drive control algorithm where the speed, the flux magnitude and the rotor flux angle are needed. The theoretical developments are supported with simulations.
Keywords :
angular velocity control; control system synthesis; induction motor drives; power system state estimation; rotors; variable structure systems; IM drive control algorithm; compound manifolds; flux magnitude; induction motor drive; manifold sliding mode observer design; rotor flux angle; speed estimation; state estimation; Induction motors; Manifolds; Observers; Rotors; Switches;
Conference_Titel :
Power Electronics and Drive Systems (PEDS), 2013 IEEE 10th International Conference on
Conference_Location :
Kitakyushu
Print_ISBN :
978-1-4673-1790-0
Electronic_ISBN :
2164-5256
DOI :
10.1109/PEDS.2013.6527188