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Magnetizing Curve Identification for Induction Motors at Standstill Without Assumption of Analytical Curve Functions

机译:不带分析曲线功能的异步电动机静止状态下的励磁曲线识别

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摘要

It is necessary to obtain accurate knowledge about the magnetizing curve of an induction machine so that the magnetizing inductance can be updated according to different flux references for either efficiency optimization or field weakening control. This paper proposes a computational saving method to obtain a one-to-one correspondence magnetizing curve without the need for conventional curve-fitting strategies, which require the assumption of explicit analytical curve functions. A detailed comparison between the proposed method and the conventional curve-fitting method has been done. It shows great accuracy improvements of this proposed method. The identification is easy to implement with high precision while maintaining the motor at standstill. No additional sensor devices are needed except the sensors carried by the drive itself. This proposed method is verified by simulation. Further experimental results of this method are utilized in a real control strategy with a 2.2-kW 50-Hz 4-pole induction motor to confirm its validity and feasibility.
机译:必须获得有关感应电机磁化曲线的准确知识,以便可以根据不同的磁通量基准更新磁化电感,以实现效率优化或磁场弱化控制。本文提出了一种节省计算量的方法来获得一对一的对应励磁曲线,而无需传统的曲线拟合策略,而这需要假定显式分析曲线函数。在建议的方法和常规的曲线拟合方法之间进行了详细的比较。它显示了该建议方法的巨大准确性改进。在保持电机静止的同时,易于实现高精度的识别。除了驱动器本身携带的传感器外,不需要其他传感器设备。仿真验证了该方法的有效性。该方法的进一步实验结果用于2.2 kW 50 Hz 4极感应电动机的实际控制策略中,以确认其有效性和可行性。

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