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Robust speed control of an induction motor: an /spl Hscr//sub /spl infin// control theory approach with field orientation and /spl mu/-analysis

机译:感应电动机的鲁棒速度控制:具有磁场定向和/ spl mu /-分析的/ spl Hscr // sub / spl infin //控制理论方法

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摘要

In this paper we present a robust speed control strategy for an induction motor under field orientation. The control framework employed properly represents the induction motor state-space model and its inherent variations, which are treated as structured uncertainties. Applying an /spl Hscr//sub /spl infin//, optimization methodology on this framework we derive a stabilizing controller to meet design objectives and then robust stability and performance against such variations are checked by using /spl mu/-analysis. No on-line tuning is required for the parameters of the derived controller, which is the dynamic system responsible to keep the rotor flux orientation as well as the speed regulation at design levels, irrespective of the motor operating points. A general methodology arose from the usage of the proposed strategy and simulated experiments showed satisfactory results for the robust speed control of an induction motor.
机译:在本文中,我们提出了磁场定向下感应电动机的鲁棒速度控制策略。所采用的控制框架适当地代表了感应电动机状态空间模型及其固有变化,这些模型被视为结构性不确定性。在此框架上应用/ spl Hscr // sub / spl infin //优化方法,我们得出了满足设计目标的稳定控制器,然后使用/ spl mu / -analysis检查了针对此类变化的鲁棒稳定性和性能。无需对所导出控制器的参数进行在线调整,该控制器是一种动态系统,可将转子磁通方向以及速度调节保持在设计水平,而与电动机的工作点无关。提出的策略的使用产生了一种通用的方法,并且模拟实验显示出对于感应电动机的鲁棒速度控制而言令人满意的结果。

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