Application of Quadratic Linearization for the Control of Permanent Magnet Synchronous Motor

P. A. Krishnamoorthy, K. Vijayarajan, Devanathan Rajagopalan
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Abstract

Many of the existing control methods for the permanent magnet synchronous motor (PMSM) either deal with steady state models or consider dynamic models under particular cases. A dynamic model of the PM machine allows powerful control-theoretic techniques such as linearization to be applied to the system. Existing exact feedback linearization of dynamic model of PMSM suffers from singularity issues. In this paper, we propose a quadratic linearization approach for PMSM based on the approximate linearization technique which does not introduce singularities. A MATLAB simulation is used to verify the effectiveness of the linearization technique proposed. Also, to account for higher-order and unmodelled dynamics of PMSM, tuning of the linearizing transformation is proposed and verified using simulation.
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二次线性化在永磁同步电机控制中的应用
现有的许多永磁同步电机控制方法要么处理稳态模型,要么在特定情况下考虑动态模型。永磁机床的动态模型允许强大的控制理论技术,如线性化应用于系统。现有的永磁同步电机动态模型精确反馈线性化存在奇异性问题。本文提出了一种基于近似线性化技术的永磁同步电机二次线性化方法,该方法不引入奇异点。通过MATLAB仿真验证了所提出的线性化方法的有效性。此外,考虑到永磁同步电机的高阶和未建模的动力学,提出了线性化变换的调谐,并通过仿真进行了验证。
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