PMSM nonlinear robust control for temperature compensation

Q. Han, C. Ham, R. Phillips
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引用次数: 3

Abstract

This paper presents a nonlinear robust speed control for dealing with variations of the permanent-magnet synchronous motor (PMSM) stator resistance due to temperature changes. The change in resistance has a large impact on the slotless surface PMSM control performance due to its relatively large stator resistance in comparison with its inductance impedance. Nonlinear robust control eliminates the need for temperature sensing and is a suitable control approach for the frequently starting and stopping operation motor control. The controller takes into account the system nonlinearities and makes no requirements on the variation of the resistance. Therefore, it is full range operational. The Lyapunov stability proof is given in detail. The designed controller is shown to be efficient and robust with the simulation.
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永磁同步电机温度补偿非线性鲁棒控制
针对永磁同步电动机定子电阻随温度变化而变化的问题,提出了一种非线性鲁棒速度控制方法。由于无槽面永磁同步电机的定子电阻相对于电感阻抗较大,因此电阻的变化对其控制性能影响较大。非线性鲁棒控制消除了对温度传感的需要,是一种适用于频繁启停电机控制的控制方法。该控制器考虑了系统的非线性特性,对电阻的变化量没有要求。因此,它是全方位的操作。给出了Lyapunov稳定性的详细证明。仿真结果表明所设计的控制器具有良好的鲁棒性和有效性。
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