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Speed Sensorless Model Predictive Control Based on Disturbance Observer for Induction Motor Drives

机译:基于扰动观测器的异步电动机驱动器无速度模型预测控制

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Model predictive control (MPC) is emerging as a powerful control scheme for high performance control of induction motor (IM) drives due to its fast torque response. In this paper, a full-order observer-based speed sensorless MPC method is studied. However, in conventional MPC design, the torque reference in the cost function is generated by the proportional-integral (PI) speed controller, thus the torque reference's generation rate is not fast and its accuracy is low especially when the load torque is given suddenly and the inertia value is varying. This paper investigates a speed sensorless model predictive control based on disturbance observer (DOB) for induction motor drives. The disturbance observer is used as the feed-forward compensation part for the PI controller, and it not only improves the torque reference's rate, but also enhances the robustness against load disturbance and inertia variations. The simulation results verified the effectiveness of the proposed method.
机译:模型预测控制(MPC)由于其快速的转矩响应,正在成为一种功能强大的控制方案,用于感应电动机(IM)驱动器的高性能控制。本文研究了一种基于全观测器的无速度传感器MPC方法。但是,在传统的MPC设计中,成本函数中的转矩参考值是由比例积分(PI)速度控制器生成的,因此转矩参考值的生成速度并不快,并且其准确性较低,尤其是当突然给定负载转矩并且惯性值是变化的。本文研究了基于干扰观测器(DOB)的感应电动机驱动器无速度传感器模型预测控制。扰动观测器用作PI控制器的前馈补偿部件,它不仅可以提高转矩参考值的比率,而且还可以增强抵抗负载扰动和惯性变化的鲁棒性。仿真结果验证了该方法的有效性。

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