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Loss-Minimizing Flux Level Control of Induction Motor Drives

机译:感应电动机驱动器的最小损耗磁通水平控制

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摘要

The paper applies a dynamic space-vector model to loss-minimizing control in induction motor drives. The induction motor model, which takes hysteresis losses and eddy-current losses as well as the magnetic saturation into account, improves the flux estimation and rotor-flux-oriented control. Based on the corresponding steady-state loss function, a method is proposed for solving the loss-minimizing flux reference at each sampling period. A flux controller augmented with a voltage feedback algorithm is applied for improving the dynamic operation and field weakening. Both the steady-state and dynamic performance of the proposed method is investigated using laboratory experiments with a 2.2-kW induction motor drive. The method improves the accuracy of the loss minimization and torque production, it does not require excessive computational resources, and it shows fast convergence to the optimum flux level.
机译:本文将动态空间矢量模型应用于感应电动机驱动器中的最小损耗控制。感应电动机模型将磁滞损耗和涡流损耗以及磁饱和考虑在内,从而改善了磁通估计和面向转子磁通的控制。基于相应的稳态损耗函数,提出了一种求解每个采样周期损耗最小的通量参考的方法。磁通控制器采用电压反馈算法进行了增强,以改善动态操作和弱磁场。使用实验室用2.2 kW感应电动机驱动器进行实验,研究了该方法的稳态和动态性能。该方法提高了损失最小化和扭矩产生的精度,不需要过多的计算资源,并且显示出快速收敛到最佳磁通水平。

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