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Current Prediction-Based Three-Vector Voltage Optimization System for the Induction Motor with Current Static Error Correction

机译:基于电流预测的电流静态误差校正感应电机三矢量电压优化系统

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摘要

In the present study, the current control method of the model predictive control is applied to the field-oriented control induction motor. The augmentation model of the motor is initially established based on the stator current equation, which performs the current predictive control and formulates the new cost function by means of tracking error. Then, the influence of parameter error on the current control stability in the prediction model is analysed, and the current static error is corrected according to the correlation between the input and feedback. Finally, a simple and effective three-vector control strategy is proposed. Moreover, three adjacent basic voltage vectors are utilized, and then six candidate voltage vectors are synthesized in each sector to replace eight basic voltage vectors in the conventional model predictive control (MPC). The obtained results show that synthesized vectors, which have arbitrary amplitude and direction, significantly expand the coverage of the system's control set, reduce the torque and flux pulsation in the conventional MPC, and improve the steady-state performance of the system. Finally, the dSPACE platform is employed to validate the performed experiment. It is concluded that the proposed method can reduce the torque and flux pulse, perform the induction motor current control, and improve the steady-state performance of the system.
机译:本研究将模型预测控制的电流控制方法应用于磁场定向控制异步电动机。基于定子电流方程初步建立电机增强模型,通过跟踪误差进行电流预测控制,制定新的成本函数。然后,分析了预测模型中参数误差对电流控制稳定性的影响,并根据输入反馈的相关性对电流静态误差进行修正;最后,提出了一种简单有效的三向量控制策略。此外,利用3个相邻的基本电压矢量,在每个扇区合成6个候选电压矢量,以取代传统模型预测控制(MPC)中的8个基本电压矢量。结果表明,合成矢量具有任意幅值和方向,显著扩大了系统控制集的覆盖范围,降低了传统MPC中的转矩和磁通脉动,提高了系统的稳态性能。最后,利用dSPACE平台对所进行的实验进行验证。结果表明,所提方法可以降低转矩和磁通脉冲,实现感应电机电流控制,提高系统的稳态性能。

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