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High-performance PMSM servo-drive with constrained state feedback position controller

机译:具有约束状态反馈位置控制器的高性能PMSM伺服驱动器

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This paper describes high-performance permanent magnet synchronous motor(PMSM)servo-drive with constrained state feedback(SFC)position controller.Superior behavior of the control system has been achieved by applying SFC with constraints handling method based on a posteriori model predictive approach(MPAC).The concept utilizes predictive equations obtained from discrete-time model of the PMSM to compute control signals which generate admissible values of the future state variables.The novelty of the proposed solution lies in the limitation of several state-space variables in servo-drive control system.Since MPAC has firstly been applied to limit more than one state-space variable of the plant,necessary conditions for introducing constraints into multivariable control system with SFC are depicted.Due to the low complexity of proposed algorithm,a low cost microprocessor,STM32F4,is employed to execute the state feedback position control with model predictive approach to constraints handling.Experimental results show that the proposed control method provides superior performance of PMSM servo-drive with modern SiC based voltage source inverter(VSI).
机译:介绍了一种带约束状态反馈(SFC)位置控制器的高性能永磁同步电动机(PMSM)伺服驱动系统。采用基于后验模型预测方法(MPAC)的带约束处理的SFC控制系统,取得了良好的控制性能。该概念利用从永磁同步电机离散时间模型获得的预测方程来计算控制信号,从而生成未来状态变量的容许值。该方案的新颖之处在于伺服驱动控制系统中几个状态空间变量的限制。由于MPAC首次应用于限制对象的多个状态空间变量,因此描述了在具有SFC的多变量控制系统中引入约束的必要条件。由于该算法的复杂性较低,采用低成本微处理器STM32F4,通过模型预测的方法来处理约束,执行状态反馈位置控制。实验结果表明,所提出的控制方法为采用现代SiC基电压源逆变器(VSI)的永磁同步电机伺服驱动提供了优越的性能。

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