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首页> 外文期刊>IEEE Transactions on Industry Applications >Nonlinear Adaptive State-Feedback Speed Control of a Voltage-Fed Induction Motor With Varying Parameters
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Nonlinear Adaptive State-Feedback Speed Control of a Voltage-Fed Induction Motor With Varying Parameters

机译:变参数电压感应电动机的非线性自适应状态反馈速度控制

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An adaptive nonlinear-state-feedback speed control scheme of a voltage-fed induction motor has been developed in which the control of torque and flux is decoupled. The inputs to the control algorithm are the reference speed, the reference flux, the measured stator currents, the measured rotor speed, the estimated rotor flux, and estimates of the rotor resistance, stator resistance, and load torque, which may vary during operation. The controller outputs are the reference stator voltages in rotor-flux rotating reference frame. An accurate knowledge of the rotor flux and machine parameters is the key factor in obtaining a high-performance and high-efficiency induction-motor drive. The rotor flux is estimated using the induction-motor rotor-circuit model. Although the estimated rotor flux is insensitive to the stator-resistance variation, it does depend on the rotor resistance. A stable model reference adaptive system (MRAS) rotor-resistance estimator insensitive to stator-resistance variation has been designed. Stable stator-resistance and load-torque MRAS estimators have also been developed. These estimators have been developed to constitute a multi-input-multi-output (MIMO) decoupled-cascade structure control system. This simplifies the design problem of the estimators for a stable operation from a MIMO design problem to a single-input-single-output (SISO) design problem. The continuous adaptive update of the machine parameters and load torque ensures accurate flux estimation and high-performance operation. Simulation and experimental results are presented to verify the stability of the induction-motor drive in various operating modes.
机译:电压感应电动机的自适应非线性状态反馈速度控制方案已经发展,其中转矩和磁通的控制被解耦。控制算法的输入是参考速度,参考磁通量,测量的定子电流,测量的转子速度,估算的转子磁通量以及估算的转子电阻,定子电阻和负载转矩,这些在运行期间可能会发生变化。控制器输出是转子磁通旋转参考系中的参考定子电压。准确掌握转子磁通和电机参数是获得高性能和高效感应电动机驱动的关键因素。使用感应电动机转子电路模型估算转子磁通。尽管估算的转子磁通量对定子电阻变化不敏感,但它确实取决于转子电阻。设计了对定子电阻变化不敏感的稳定模型参考自适应系统(MRAS)转子电阻估计器。还开发了稳定的定子电阻和负载扭矩MRAS估计器。这些估计器已被开发以构成多输入多输出(MIMO)解耦级联结构控制系统。这简化了用于稳定操作的估计器的设计问题,从MIMO设计问题到单输入单输出(SISO)设计问题。机器参数和负载转矩的连续自适应更新可确保准确的磁通估算和高性能运行。给出了仿真和实验结果,以验证感应电动机驱动器在各种运行模式下的稳定性。

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