在参数不确定的情况下,感应电动机在很大范围内的磁场减弱

A. Bunte, H. Grotstollen, P. Krafka
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引用次数: 46

摘要

本文提出了一种新的感应电机控制方法,以确保在允许的转速范围内产生最大转矩。本文第一部分分析了饱和气隙感应电动机在一定电压和电流条件下的稳态转矩能力。这种最大扭矩可以通过不同的控制方案来实现。然而,从鲁棒性和达到最优的要求来看,这些方案有所不同。本文提出了一种仅依靠电压和电流的测量值就能在整个磁场减弱区达到最佳工作点的方案。该方法保证了对参数不确定性和直流链路电压变化的鲁棒调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Field weakening of induction motors in a very wide region with regard to parameter uncertainties
In this paper, a new approach to induction machine control is presented that ensures the production of maximum torque over the permitted speed range. In the first part of the paper the steady state torque capability of an induction motor with saturation air gap inductance is analysed, when voltage as well as current are limited. This maximum torque can be achieved with different control schemes. Nevertheless, the schemes differ in view of robustness and the requirements to reach the optimum. In this paper, a scheme is presented that achieves the optimum operating point in the whole field weakening region only by means of the measured values of voltage and current. This method guarantees a robust adjustment with regard to the parameter uncertainties and the variable DC link voltage.
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