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Optimal and robust digital current controller synthesis for vector-controlled induction motor drive systems

机译:矢量控制感应电动机驱动系统的最佳和强大的数字电流控制器综合

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摘要

The vector-controlled induction-motor drive is a multi-input multi-output system. By using modern control techniques, all feedback loops can be closed simultaneously, in addition to obtaining optimal gains for the controllers. A systematic approach to the design of the digital current controllers is proposed. A vector-controlled induction-motor-drive system is usually viewed as a full-state feedback problem, where the non-measurable states are estimated using suitable reduced-order observers. Here, the induction-motor-drive system is viewed as a linear quadratic (LQ) tracker problem with output feedback, as this approach uses only the measurable states of the system and provides flexibility in choosing the control structure. The current controllers are designed for the torque dynamics of the induction motor. The controller should also be so designed that the whole drive system is stable for a class of induction motors, i.e. the whole drive system should be stable in the face of uncertainties in the parameters of the induction motor. Therefore, it becomes essential to build stability robustness into the controller design. Here, the proposed systematic approach determines the optimal controller gains for a given performance specification under the constraint that the whole system has stability robustness for uncertainties in the specified parameters of the induction motor. The concepts are illustrated by simulation.
机译:矢量控制感应电动机驱动器是一个多输入多输出系统。通过使用现代控制技术,除了获得控制器的最佳增益之外,所有反馈回路都可以同时闭合。提出了一种数字电流控制器设计的系统方法。矢量控制感应电动机驱动系统通常被视为全状态反馈问题,其中不可测量状态是使用合适的降阶观测器估算的。在这里,感应电动机驱动系统被视为具有输出反馈的线性二次(LQ)跟踪器问题,因为这种方法仅使用系统的可测量状态,并提供了选择控制结构的灵活性。电流控制器设计用于感应电动机的转矩动态。控制器的设计还应使整个驱动系统对于一类感应电动机是稳定的,即,面对感应电动机参数的不确定性,整个驱动系统应是稳定的。因此,在控制器设计中建立稳定性鲁棒性变得至关重要。在此,在整个系统对感应电动机的指定参数的不确定性具有稳定性的约束下,所提出的系统方法确定了给定性能规格的最佳控制器增益。通过仿真说明了这些概念。

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    Umanand L; Bhat SR;

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  • 年度 1996
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