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Sliding mode control of chaos in the noise-perturbed permanent magnet synchronous motor with non-smooth air-gap 被引量:6

Sliding mode control of chaos in the noise-perturbed permanent magnet synchronous motor with non-smooth air-gap
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摘要 Permanent magnet synchronous motor (PMSM) is widely used in mining, and there exists chaotic behav- ior when it runs. In order to dispel its adverse effect on security in mining, the chaotic system of PMSM was analyzed. With noise disturbances, the complex dynamic characteristics of chaos were also analyzed, and proved the objective existence of chaos. As we all know, it is very difficult for conventional PMSM control to meet the design requirements, therefore, in order to ensure the robustness of the system, the chaotic orbits were stabilized to arbitrary chosen fixed points and periodic orbits by means of sliding mode method. Finally MATLAB simulations were presented to confirm the validity of the controller. The results show that the PMSM with the sliding mode control has a good dynamic performance and steady state accuracy. Permanent magnet synchronous motor (PMSM) is widely used in mining, and there exists chaotic behav- ior when it runs. In order to dispel its adverse effect on security in mining, the chaotic system of PMSM was analyzed. With noise disturbances, the complex dynamic characteristics of chaos were also analyzed, and proved the objective existence of chaos. As we all know, it is very difficult for conventional PMSM control to meet the design requirements, therefore, in order to ensure the robustness of the system, the chaotic orbits were stabilized to arbitrary chosen fixed points and periodic orbits by means of sliding mode method. Finally MATLAB simulations were presented to confirm the validity of the controller. The results show that the PMSM with the sliding mode control has a good dynamic performance and steady state accuracy.
出处 《Mining Science and Technology》 EI CAS 2011年第6期835-838,共4页 矿业科学技术(英文版)
基金 supported in part by the National Natural Science Foundation of China (No. 50879072) the Fundamental Research Funds for the Central Universities of CUMT (No.2010QNB33) The National Undergraduate Innovation Programof CUMT (No. 101029013)
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