DocumentCode :
2194641
Title :
Sensorless control of interior permanent-magnet synchronous motors based on a fictitious permanent-magnet flux model
Author :
Koonlaboon, Suratsavadee ; Sangwongwanich, Somboon
Author_Institution :
Sch. of Eng. & Resources, Walailak Univ., Nakon Si Thammarat, Thailand
Volume :
1
fYear :
2005
fDate :
2-6 Oct. 2005
Firstpage :
311
Abstract :
Due to the saliency of the IPMSM, the model-based adaptive observer used in the sensorless control is nonlinear and difficult to analyze. With the extended EMF concept, the model though becomes partly linear, the extended EMF dynamic itself is very complicated making the application of an adaptive full-order observer troublesome. This problem is eliminated with a fictitious permanent-magnet flux model newly proposed in this paper for the IPMSM, because it converts the IPMSM into an equivalent SPMSM. The new model is simple, approximately linear and allows the adaptive observer algorithm to be applied easily. Also, the EMF induced by the fictitious magnet flux is exactly the fictitious EMF of the phasor diagram of the synchronous machine´s two-reaction theory found in electrical machine textbooks. The initial rotor position can also be estimated easily from this fictitious EMF which always points in the d-axis at standstill. A novel sensorless scheme based on the proposed model is constructed, and its stability conditions are derived analytically to give design guidelines. Experiment results are given to verify the theoretical results.
Keywords :
electric potential; machine control; magnetic flux; nonlinear control systems; observers; permanent magnet motors; rotors; synchronous motors; EMF; adaptive observer; electrical machine textbook; extended electromotive force; fictitious magnet flux; interior permanent-magnet synchronous motor; nonlinear control; permanent-magnet flux; rotor position estimation; sensorless control; synchronous machine; two-reaction theory; Adaptive control; Electronic mail; Guidelines; Linear approximation; Mathematical model; Programmable control; Sensorless control; Stability analysis; Stators; Synchronous motors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industry Applications Conference, 2005. Fourtieth IAS Annual Meeting. Conference Record of the 2005
ISSN :
0197-2618
Print_ISBN :
0-7803-9208-6
Type :
conf
DOI :
10.1109/IAS.2005.1518326
Filename :
1518326
Link To Document :
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