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Elimination of Saturation Effects in Sensorless Position-Controlled Induction Motors

机译:消除无传感器位置控制感应电动机中的饱和效应

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摘要

Owing to the variable magnetic coupling between the stator windings and the discrete rotor bars of an induction motor, a quasicontinuous rotor position signal can be acquired by instantaneous measurement of the total leakage inductance of the three stator phases. The signals are sampled in synchronism with the regular commutations of the pulsewidth-modulation process, thus making the injection of additional high-frequency carriers obsolete. The acquired position signal exhibits high spatial resolution and high dynamic bandwidth. Magnetic saturation also influences the total leakage inductances and, hence, constitutes a disturbance for position identification. This paper presents a detailed analysis of the saturation effects and proposes methods to eliminate their undesired impact on the position signal. Experimental results of closed-loop sensorless position control at full load and high dynamic performance are presented.
机译:由于感应电动机的定子绕组和分立的转子条之间的可变磁耦合,可以通过瞬时测量三个定子相的总漏感来获取准连续的转子位置信号。与脉宽调制过程的常规换向同步地对信号进行采样,从而避免了注入额外的高频载波。所获取的位置信号表现出高空间分辨率和高动态带宽。磁饱和也会影响总的漏感,因此会干扰位置识别。本文对饱和效应进行了详细分析,并提出了消除其对位置信号的不良影响的方法。提出了全负荷无负载闭环位置控制和高动态性能的实验结果。

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