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Parameterless rotor position estimation in a direct-torque controlled salient-pole PMSM without using additional test signals

机译:在直接扭矩控制的突出极PMSM中的无数转子位置估计而不使用额外的测试信号

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A vector controller is often applied to control a permanent-magnet synchronous machine (PMSM) at different operating points. A well-performing vector control method is the Direct Torque Control (DTC). From measurements of the stator phase currents only, the stator flux can be estimated and controlled in order to obtain the desired electromagnetic torque. To achieve accurate flux estimations in salient-pole machines the saliency should be taken into account for which the rotor position can be required. To avoid a position sensor in the DTC-PMSM, this paper discusses a rotor position estimator that computes the rotor position from the ripple in the stator current. For this purpose, the stator voltage, the stator current ripple and the relation of these variables to the rotor position is studied. The main advantage of this estimation method is that it can seamlessly be applied within existing direct torque controllers that operate in a broad speed range from standstill to high speed.
机译:通常应用矢量控制器以在不同的操作点控制永磁同步机(PMSM)。良好的载体控制方法是直接扭矩控制(DTC)。根据定子相电流的测量,可以估计和控制定子通量以获得所需的电磁扭矩。为了实现凸极机器中的准确磁通估计,应考虑所需的显着性转子位置。为了避免DTC-PMSM中的位置传感器,本文讨论了转子位置估计器,其计算来自定子电流中的纹波的转子位置。为此目的,研究了定子电压,定子电流纹波和这些变量对转子位置的关系。该估计方法的主要优点是它可以无缝地应用于现有的直接扭矩控制器,其在宽速范围内从静止到高速操作。

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