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Induction motor control: multivariable analysis and effective decentralized control of stator currents for high performance applications

机译:感应电动机控制:高性能应用中的定子电流的多变量分析和有效分散控制

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摘要

Adequate control of the stator currents is a fundamental requirement for several high-performance induction motor (IM) control schemes. In this context, classical linear controllers remain widely employed due to their simplicity and success in industrial applications. However, the models and methods commonly used for control design lack valuable information –which is fundamental to guarantee robustness and high performance. Following this line, the design and existence of linear fixed controllers is examined using individual channel analysis and design. The studies here presented aim to establish guidelines for the design of simple (time-invariant, low order, stable, minimum-phase and decentralized), yet robust and highperformance linear controllers. Such characteristics ease the implementation task and are well suited for engineering applications, making the resulting controllers a good alternative for the stator currents control required for high-performance IM schemes; e.g., field oriented, passivity-based and intelligent control. Illustrative examples are presented to demonstrate the analysis and controller design of an IM, with results validated in a real-time experimental platform. It is shown that it is possible to completely decouple the stator currents subsystem without the use of additional decoupling elements.
机译:定子电流的适当控制是几种高性能感应电动机(IM)控制方案的基本要求。在这种情况下,传统的线性控制器由于其简单性和在工业应用中的成功而仍被广泛采用。但是,通常用于控制设计的模型和方法缺少有价值的信息,这是保证鲁棒性和高性能的基础。遵循这条线,使用单个通道分析和设计来检查线性固定控制器的设计和存在。这里提出的研究旨在为简单(时不变,低阶,稳定,最小相位和分散),鲁棒和高性能的线性控制器的设计建立准则。这样的特性使实现任务变得容易,并且非常适合工程应用,从而使所得的控制器成为高性能IM方案所需的定子电流控制的良好替代方案。例如,面向磁场,基于被动性的智能控制。给出了说明性示例,以演示IM的分析和控制器设计,并在实时实验平台上验证了结果。结果表明,可以在不使用附加解耦元件的情况下完全解耦定子电流子系统。

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