Synthesis of Control Algorithms for a Permanent Magnet Synchronous Motor in Sliding Mode

M. Ostroverkhov, V. Chibelis, Maxim Falchenko
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Abstract

The paper considers the synthesis of algorithms for controlling a permanent magnet synchronous motor in the sliding mode based he the concept of inverse problems of dynamics, which provide low sensitivity that parametric and coordinate disturbances. The basis of the method is the idea of reversibility of the direct Lyapunov method for stability research, which allows finding control laws in which the closed circuit has a predetermined Lyapunov function. The Lyapunov function is the instantaneous energy value. A characteristic feature of the presented control laws is the absence of object parameters in them. This ensures high control quality, dynamic decomposition of the interconnected system, and facilitates the practical implementation of control algorithms.
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永磁同步电机滑模控制算法的综合
基于动力学逆问题的概念,综合考虑了对参数扰动和坐标扰动敏感性较低的永磁同步电机滑模控制算法。该方法的基础是稳定性研究的直接李雅普诺夫方法的可逆性思想,该方法允许找到闭环具有预定李雅普诺夫函数的控制律。李雅普诺夫函数是瞬时能值。所提出的控制律的一个特点是其中不含目标参数。这保证了高控制质量,互联系统的动态分解,便于控制算法的实际实施。
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