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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Speed and Position Controllers Using Indirect Field-Oriented Control: A Classical Control Approach
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Speed and Position Controllers Using Indirect Field-Oriented Control: A Classical Control Approach

机译:使用间接磁场定向控制的速度和位置控制器:经典控制方法

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摘要

Torque control for induction motors under the scheme of indirect field-oriented control (IFOC) considering rotor resistance perturbations is analyzed via linear approximations. Several important characteristics of IFOC are elucidated, leading to the design of linear, robust, and performance-based torque, speed, and position controllers. In particular, the resulting controllers are of a low order, robust to rotor resistance perturbations, and are designed according to classical performance specifications, which is a combination of characteristics that have been historically difficult to achieve. General control design guidelines valid for any induction motor are presented. In addition, the stability and minimum phase conditions of the IFOC torque controller are fully derived for any induction motor. These conditions are of prime importance when designing fixed linear speed or position controllers. A case study for a typical motor, including the design of a series of robust controllers and real-time experimental results, is presented. The proposed approach makes use of well-known classical control methods that allow the results presented here to be further extended using any linear single-input–single-output controller design tool, such as ${rm H}_{infty}$ and quantitative feedback theory.
机译:通过线性近似,分析了考虑转子电阻扰动的间接磁场定向控制(IFOC)方案下感应电动机的转矩控制。阐明了IFOC的几个重要特性,从而导致了基于线性,鲁棒性和基于性能的扭矩,速度和位置控制器的设计。特别地,所得的控制器具有低阶,对转子电阻扰动具有鲁棒性,并且根据经典性能规格进行设计,而经典性能规格是历史上难以实现的特征的组合。提出了适用于任何感应电动机的通用控制设计指南。此外,IFOC扭矩控制器的稳定性和最小相位条件可完全适用于任何感应电动机。在设计固定线性速度或位置控制器时,这些条件至关重要。给出了一个典型电机的案例研究,包括一系列鲁棒控制器的设计和实时实验结果。建议的方法利用了众所周知的经典控制方法,可以使用任何线性单输入-单输出控制器设计工具(例如$ {rm H} _ {infty} $和定量的)进一步扩展此处介绍的结果。反馈理论。

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