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Effect of Stator and Rotor Saturation on Sensorless Rotor Position Detection

机译:定子和转子饱和度对无传感器转子位置检测的影响

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This paper investigates the impact of the geometry of a permanent-magnet (PM) motor on the capability to detect the rotor position without sensors by means of a high-frequency signal injection. An interior PM motor with three rotor flux barriers is considered, which is characterized by a magnetic saliency, necessary for the sensorless rotor position detection. The objective is twofold: 1) to keep an adequate saliency in all the operating range of the motor, including operations at high current, and 2) to limit the angular error of the rotor detection, which is due to the effect of the cross-saturation between the $d$- and the $q$-axes. The phenomenon of iron saturation is deeply analyzed, highlighting how the saturation of both the stator and rotor affects the machine performance, in terms of sensorless rotor position detection capability. To this purpose, the motor geometry is modified so as to achieve a higher iron saturation in the stator and, then, in the rotor. Then, the volume of the PM is changed so as to emphasize the impact of the PM flux. Different rotor geometries are finally compared with the initial one.
机译:本文研究了永磁(PM)电机的几何形状对通过高频信号注入无需传感器即可检测转子位置的能力的影响。考虑了具有三个转子磁通屏障的内部PM电机,该电机的特征是无传感器转子位置检测所需的磁凸度。目的是双重的:1)在电动机的所有运行范围(包括大电流运行)中保持足够的凸度,以及2)限制转子检测的角度误差,这是由于交叉效应引起的。 $ d $ -和 $ q $ -轴。对铁饱和现象进行了深入分析,从无传感器转子位置检测能力的角度,突出了定子和转子的饱和如何影响电机性能。为此,修改了电动机的几何形状,以便在定子中然后在转子中获得更高的铁饱和度。然后,改变PM的体积以强调PM通量的影响。最后将不同的转子几何形状与初始的进行比较。

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