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A robust magnetic polarity self-sensing method for start-up of PM synchronous machine in fan-like system

机译:一种鲁棒的磁极自感测方法,用于风机系统中的永磁同步电机启动

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In the field of permanent magnet synchronous motor (PMSM) self-sensing control, the initial rotor position estimation is always important, for which, the rotor magnetic polarity estimation is particularly a major task. This paper presents a robust rotor polarity estimation method based on the comprehensive utility of both magnetic saturation effect and rotor angular acceleration. The method can be used for the PMSM system for the fan or pump-like applications. In the method, pulsating-voltage-vector injection is used to track the d-axis and measure the incremental inductance variation of the estimated d-axis. The magnetic saturation effect is magnified by exciting a sinusoidal low-frequency d-axis current rather than the traditional DC current. The angular acceleration is then measured by exciting a positive ramp q-axis current. Both the incremental inductance variation and the angular acceleration contain the rotor polarity information. In this paper, these two methods are combined, as the latter method is to confirm the estimation of the former method. Thus, a robust self-sensing start-up is guaranteed. Experimental results validate the effectiveness of the proposed algorithm.
机译:在永磁同步电动机(PMSM)自感控制领域,初始转子位置估计始终很重要,为此,转子磁极性估计特别重要。本文提出了一种基于磁饱和效应和转子角加速度综合利用的鲁棒转子极性估计方法。该方法可用于风扇或泵类应用的PMSM系统。在该方法中,使用脉动电压矢量注入来跟踪d轴并测量估计的d轴的增量电感变化。通过激励正弦形低频d轴电流而不是传统的DC电流来放大磁饱和效应。然后,通过激励正斜率q轴电流来测量角加速度。增量电感变化和角加速度都包含转子极性信息。本文将这两种方法结合起来,因为后一种方法是为了确认前一种方法的估计。因此,可以保证强大的自感应启动。实验结果验证了该算法的有效性。

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