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Controller Design for Vector Controlled AC Induction Motor Drive using State-space Design Methodologies

机译:矢量控制交流感应电机驱动的控制器设计使用状态空间设计方法

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Recently, Vector Control also known as Field Oriented Control used in AC induction motor drive provides us of a way to control AC induction motor similar to that of a DC motor. This objective is achieved by transforming the time-varying, difficult to control stator currents into a simple time-invariant system by means of coordinate transformations. This in turn provides us with a systematical way towards designing a controller using classical control or modern state-space design methodologies. Purpose of this research is to use the latter in designing a controller towards regulating current responsible for torque response. A non-linear model of the AC Induction Motor is modeled in the rotating (d,q) reference frame for the control purposes. Then, a state feedback linearization controller was design based on the idea of "exact linearization" to transform the nonlinear model into linear state-space model, thus enabling controller design using modern state-space approach. A Linear Quadratic optimal controller and Feedback+Feedforward controller is then designed and applied to the linearized induction motor model. For comparison purposes a classical P/PI controller was also designed. Simulation is then carried out using MATLAB/SIMULINK software and results shows good current regulation by controller design using modern state -space methodologies.
机译:最近,在AC感应电动机驱动器中使用的矢量控制也被称为场取向控制,为我们提供了一种控制类似于直流电动机的AC感应电动机的方法。通过转换时变,难以通过坐标变换将定子电流控制成简单的时间不变系统来实现该目的。这反过来为我们提供了使用经典控制或现代状态空间设计方法设计控制器的系统方法。本研究的目的是使用后者设计控制器朝向调节负责扭矩反应的电流。 AC感应电动机的非线性模型在旋转(D,Q)参考框架中建模,用于控制目的。然后,一种状态反馈线性化控制器是基于“精确线性化”的思想来设计,以将非线性模型转换为线性状态空间模型,从而使用现代状态空间方法实现控制器设计。然后设计线性二次最佳控制器和反馈+前馈控制器并应用于线性化的感应电动机模型。为了比较目的,还设计了一种经典的P / PI控制器。然后使用Matlab / Simulink软件进行仿真,并使用现代状态 - 空间方法显示控制器设计的良好电流调节。

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