非光滑气隙噪声摄动永磁同步电机混沌的滑模控制

Ma Caoyuan , Wang Longshun , Yin Zhe , Liu Jianfeng , Chen Diyi
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引用次数: 18

摘要

永磁同步电机在矿山中应用广泛,在运行过程中存在混沌行为。为了消除其对矿山安全的不利影响,对永磁同步电机的混沌系统进行了分析。在噪声干扰下,分析了混沌的复杂动态特性,证明了混沌的客观存在。众所周知,传统的永磁同步电机控制很难满足设计要求,因此,为了保证系统的鲁棒性,采用滑模方法将混沌轨道稳定为任意选择的不动点和周期轨道。最后通过MATLAB仿真验证了该控制器的有效性。结果表明,采用滑模控制的永磁同步电机具有良好的动态性能和稳态精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sliding mode control of chaos in the noise-perturbed permanent magnet synchronous motor with non-smooth air-gap

Permanent magnet synchronous motor (PMSM) is widely used in mining, and there exists chaotic behavior 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.

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