Robust cascaded nonlinear predictive control of a permanent magnet synchronous motor

R. Errouissi, M. Ouhrouche
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引用次数: 9

Abstract

This paper presents a cascaded nonlinear predictive control of a permanent magnet synchronous motor (PMSM) drive. The Taylor series expansion is used to carry out the prediction defined on a finite horizon. However, it's well-known that this control strategy cannot remove completely the steady state error under mismatched parameters and load torque. Then, the full knowledge of machine parameters and operating conditions must be used to compute the control law. For that reason, a disturbance observer is designed for the estimation of the offset caused by the parameters uncertainties and external disturbance. By taking into account the offset observer in the global control system design, an equivalent cascaded proportional integration (PI) action is obtained. The performances of the proposed control strategy are analysed by simulation. The obtained results show the effectiveness of the proposed control strategy regarding trajectory tracking and
永磁同步电机的鲁棒级联非线性预测控制
提出了一种永磁同步电机驱动的级联非线性预测控制方法。用泰勒级数展开来实现有限视界上的预测。然而,众所周知,这种控制策略并不能完全消除参数和负载转矩不匹配时的稳态误差。然后,必须充分了解机器参数和运行条件来计算控制律。为此,设计了扰动观测器来估计由参数不确定性和外部扰动引起的偏移量。通过在全局控制系统设计中考虑偏移观测器,得到了等效的级联比例积分(PI)作用。通过仿真分析了所提控制策略的性能。仿真结果表明了所提控制策略在轨迹跟踪和控制方面的有效性
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