Algorithms of Robustly Stable Systems for Synchronous Electric Drive in Field Weakening Mode

M. Buryk, M. Ostroverkhov, V. Boiko
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Abstract

Decomposing control algorithms for a robustly stable nonlinear interconnected vector control system for the speed of a synchronous motor are presented. The equation of algorithms is obtained in a closed form according to the classical models of Lagrange and Euler, which reflect the fundamental laws of dynamics. The presented results of mathematical modelling (transient processes of electromechanical coordinates of the system) illustrate that the nonlinear system has the properties of robust stability. The field weakening mode is used to limit the voltage of the inverter in the second zone, due to the known (reference) trajectory of the angular speed of the motor rotor and its first (limited) time derivative. The paper investigates how a reference trajectory of angular speed affects the dynamics of an adjustable synchronous electric drive in vector control.
磁场减弱模式下同步电驱动鲁棒稳定系统的算法
提出了一种鲁棒稳定同步电动机转速非线性互联矢量控制系统的分解控制算法。根据经典的拉格朗日和欧拉模型,以封闭形式得到了算法方程,反映了动力学的基本规律。给出的数学模型(系统机电坐标的瞬态过程)结果表明,该非线性系统具有鲁棒稳定性。由于电机转子角速度的已知(参考)轨迹及其第一(有限)时间导数,磁场减弱模式用于限制变频器在第二区域的电压。本文研究了矢量控制中参考角速度轨迹对可调同步电传动动力学特性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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