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Comparison of two novel MRAS strategies for identifying parameters in permanent magnet synchronous motors

By Kan Liu, Q. Zhang, Z. Q. Zhu, J. Zhang, A. W. Shen and Paul Stewart

Abstract

Two Model Reference Adaptive System (MRAS) estimators are developed for identifying the parameters of permanent magnet synchronous motors (PMSM) based on Lyapunov stability theorem and Popov stability criterion, respectively. The proposed estimators only need online detection of currents, voltages and rotor rotation speed, and are effective in the estimation of stator resistance, inductance and rotor flux-linkage simultaneously. Their performances are compared and verified through simulations and experiments. It shows that the two estimators are simple and have good robustness against parameter variation and are accurate in parameter tracking. However, the estimator based on Popov stability criterion, which can overcome the parameter variation in a practical system, is superior in terms of response speed and convergence speed since there are both proportional and integral units in the estimator in contrast to only one integral unit in the estimator based on Lyapunov stability theorem. In addition, there is no need of the expert experience which is required in designing a Lyapunov function

Topics: H600 Electronic and Electrical Engineering
Publisher: Springer
Year: 2010
DOI identifier: 10.1007/s11633-010-0535-3
OAI identifier: oai:eprints.lincoln.ac.uk:2898
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