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Stability analysis and PI controller tuning for a speed-sensorless vector-controlled induction motor drive

机译:无速度传感器矢量控制感应电动机驱动器的稳定性分析和PI控制器调整

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The purpose of this paper is to determine the controller parameter tuning range for a speed sensorless vector-controlled induction motor drive from the system stability point-of-view. The tuning rules for conventional PI controllers are mostly based on experience, Trial-and-error procedures are used to tune the values of the controller parameters. The relationship between the tuned controller parameters and the stable operating range of the control system is generally not known. The approach of this paper starts from establishing the complete dynamic models for a sensorless vector-controlled induction motor drive. The nonlinear dynamic models are linearized around a chosen operating point The characteristic equation is then derived, which is used to determine the values of the controller parameters corresponding to the marginal system stability. Based on these critical values, the tuning range of the controller parameters is obtained, which assures stable operation of the drive in the entire operating region and provides a reference for controller parameter tuning.
机译:本文的目的是从系统稳定性的角度确定无速度传感器矢量控制感应电动机驱动器的控制器参数调整范围。常规PI控制器的调整规则主要基于经验,反复试验过程用于调整控制器参数的值。调节后的控制器参数和控制系统的稳定运行范围之间的关系通常是未知的。本文的方法从建立无传感器矢量控制感应电动机驱动器的完整动力学模型开始。非线性动态模型在选定的工作点周围线性化。然后推导特征方程,该方程用于确定与边际系统稳定性相对应的控制器参数的值。基于这些临界值,可以获取控制器参数的调整范围,从而确保驱动器在整个操作区域中的稳定运行,并为控制器参数的调整提供参考。

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