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Sensorless Self-Commissioning of Synchronous Reluctance Motors at Standstill Without Rotor Locking

机译:静止无磁的同步磁阻电动机的无传感器自调试

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摘要

This paper proposes a standstill method for identification of the magnetic model of synchronous reluctance motors (SyRMs). The saturation and cross-saturation effects are properly taken into account. The motor is fed by an inverter with a short sequence of bipolar voltage pulses that are first applied on the rotor d- and q-axes separately and then simultaneously on both the axes. The stator flux linkages are computed by integrating the induced voltages. Using the current and flux samples, the parameters of an algebraic magnetic model are estimated by means of linear least squares. The proposed method is robust against errors in the stator resistance and inverter voltage, due to the high test voltages (of the order of the rated voltage). The fitted model matches very well with the reference saturation characteristics, measured using a constant-speed method, and enables extrapolation outside the sample range. The method was tested with a 2.2-kW SyRM, whose shaft was uncoupled from any mechanical load, which is the most demanding condition for this method. The proposed method can be used for automatic self-commissioning of sensorless SyRM drives at standstill.
机译:本文提出了一种静态方法来识别同步磁阻电机(SyRM)的磁模型。适当考虑了饱和和交叉饱和的影响。逆变器为电机提供短序列的双极性电压脉冲,该脉冲首先分别施加在转子的d轴和q轴上,然后同时施加在两个轴上。通过积分感应电压来计算定子磁链。使用电流和磁通量样本,通过线性最小二乘法估算代数磁性模型的参数。由于高测试电压(约为额定电压),因此所提出的方法对于定子电阻和逆变器电压中的误差具有鲁棒性。拟合的模型与使用恒速方法测量的参考饱和度特性非常匹配,并且可以在样本范围外进行外推。该方法使用2.2 kW SyRM进行了测试,其轴与任何机械负载都没有耦合,这是此方法最苛刻的条件。该方法可用于静止状态下无传感器SyRM驱动器的自动自调试。

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