Author:
Zhang Changfan, ,Zhang Miaoying,He Jing,Shao Rui,Luo Lixiang, ,
Abstract
To detect demagnetization faults in real time based on an adaptive sliding mode observer, we used a permanent-magnet synchronous motor (PMSM). Demagnetization faults are first modeled for the PMSM using coordinates oriented to the magnetic field. To solve demagnetization faults problems as multiple parameters change, we used adaptive and sliding mode variable structure control and designed an adaptive sliding mode observer. The adaptive estimation algorithm of the permanent magnet flux is given and the observer’s stability is proven by Lyapunov stability theory. Simulation and experimental results demonstrate the feasibility and effectiveness of our proposal.
Publisher
Fuji Technology Press Ltd.
Subject
Artificial Intelligence,Computer Vision and Pattern Recognition,Human-Computer Interaction
Reference14 articles.
1. J. He, C. F. Zhang, L. Jia, and K. H. Zhao, “Demagnetization fault reconstruction for permanent Magnet synchronous motor,” Electric Machines and Control, Vol.18, No.2, pp. 8-14, 2014.
2. D. Torregrossa, A. Khoobroo, and B. Fahimi, “Prediction of acoustic noise and torque pulsation in PM synchronous machines with static eccentricity and partial demagnetization using field Reconstruction method,” IEEE Trans. on Industry Applications, Vol.59, pp. 934-944, 2012.
3. G. Vinson, M. Combaca, and T. Prodo, “Permanent Magnets Synchronous Machines Faults Detection and Identification,” 38th Annual Conf. on IEEE Industrial Electronics Society, pp. 3925-3930, 2012.
4. A. R. Meghnous, M. T. Pham, and X. Lin Shi, “Dynamic Identification of a Synchronous Machine Using an Extended Sliding Mode Observer,” Mathematics and Computers in Simulation, Vol.90, pp. 45-59, 2013.
5. M. A. Hamida, A.Glumineau, J. Leon, and L. Loron, “Robust Adaptive High Order Sliding-mode Optimum Controller for Sensorless Interior Permanent Magnet Synchronous Motors,” Mathematics and Computers in Simulation, Vol.105, pp. 79-104, 2014.
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献