Numerical optimal vector control for torque control of interior permanent magnet synchronous motor by poincare map and averaging theory

R. Molavi, D.A. Khaboori, M. Shariatmadar
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Abstract

The permanent magnet synchronous motor (PMSM) is very useful in applications. Vector control of PMSM is popular kind of its control .But nonlinearity of PMSM and existence of inverter in its control circuit caused that optimal gains with conventional optimal control theory can not be found. In this paper first the complete vector control of PMS (including flux leakage model) is modeled with poincare map then the time variant model with averaging theory is converted to time invariant. Finally the system is converted to linear form with jacobian of resultant model. At the end in the numerical simulation result of this model can be seen.
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基于庞加莱映射和平均理论的内置永磁同步电机转矩控制数值最优矢量控制
永磁同步电动机(PMSM)在实际应用中是非常有用的。矢量控制是永磁同步电机的一种常用控制方法,但由于其控制电路的非线性和逆变器的存在,使得传统的最优控制理论无法获得最优增益。本文首先用庞加莱映射对PMS的全矢量控制(包括漏磁模型)进行建模,然后将采用平均理论的时变模型转化为时不变模型。最后利用合成模型的雅可比矩阵将系统转换成线性形式。最后在该模型的数值模拟结果中可以看出。
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