永磁同步电机驱动增压供水系统的非线性控制

H. Aschemann, A. Rauh, R. Prabel
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引用次数: 4

摘要

本文提出了一种基于平面度的永磁同步电机多变量控制方法。流体子系统由一个泵和一个连接到高压侧的存储体组成。泵必须提供供给容积流进入存储容积,而排泄容积流被认为是一种扰动。基于转子固定坐标系下永磁同步电机的非线性数学模型和所附流体系统,提出了一种非线性跟踪控制策略。在这里,可以利用转子d电流和存储压力作为平坦输出的模型的差分平坦度来推导前馈和反馈联合控制策略。通过对流体回路的分析,得出了永磁同步电机与泵之间的耦合力矩。作用在泵上的扰动力矩由非线性降阶观测器确定,并可用于补偿策略以改善电驱动的跟踪性能。仿真结果表明了该控制结构的有效性和良好的跟踪性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear control of a pressurised water supply driven by a permanent magnet synchronous motor
In this paper, a flatness-based multivariable control of a permanent magnet synchronous motor (PMSM) as the main drive of a pressurised water supply system is presented. The fluidic subsystem consists of a pump and a storage volume connected to the high pressure side. The pump has to provide the supply volume flow into the storage volume, whereas the drain volume flow is considered as a disturbance. Based on a nonlinear mathematical model of the PMSM in a rotor-fixed coordinate system and the attached fluidic system, a nonlinear tracking control strategy is proposed. Here, the differential flatness of the model with the d-current of the rotor and the storage pressure as flat outputs can be exploited to derive a combined feedforward and feedback control strategy. The coupling torque between the PMSM and the pump follows from an analysis of the fluidic circuit. The disturbance torque acting on the pump is determined by a nonlinear reduced-order observer and can be used in a compensation strategy to improve the tracking behaviour of the electric drive. Simulations point out the effectiveness and the excellent tracking properties of the proposed control structure.
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