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Model sensitivity of fundamental-frequency-based position estimators for sensorless pm and reluctance synchronous motor drives

机译:基于基频的位置估计器对无传感器pm和磁阻同步电动机驱动器的模型灵敏度

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摘要

Sensorless drives for permanent magnet (PM) and reluctance synchronous motors are quite interesting options in modern ac drives. Fundamental-frequency observers provide a rotor position estimate, to be used instead of that measured by delicate sensors. The estimation algorithms are based on either the extended electromotive force or active flux concepts. They feature easy implementation, although their reliability may be undermined by both corrupted measurements and parameter variations, especially in the case of anisotropic rotor structures. Through an analytical sensitivity analysis, this article investigates the influence of model uncertainty on the observed position. The substantial relationships between cause (parameter uncertainty or measurement error) and effect (position error) are validated by experimental results, which also highlights the effects of the q-axis inductance and resistance values on the electric measurement sensitivities. The resulting functions and graphic plots are useful to draw interesting considerations about the motor selection and the control design of the sensorless drive.
机译:在现代交流驱动器中,用于永磁体(PM)和磁阻同步电动机的无传感器驱动器是非常有趣的选择。基频观测器提供了转子位置估算,以代替精密传感器测量的转子位置估算。估计算法基于扩展的电动势或有效磁通量概念。它们的特点是易于实施,尽管其可靠性可能会因损坏的测量值和参数变化而受到损害,尤其是在各向异性转子结构的情况下。通过分析敏感性分析,本文研究了模型不确定性对观察位置的影响。实验结果验证了原因(参数不确定性或测量误差)与效果(位置误差)之间的实质关系,这也突出了q轴电感和电阻值对电测量灵敏度的影响。由此产生的函数和图形图对于得出有关电机选择和无传感器驱动器的控制设计的有趣考虑很有用。

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