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Sensorless field orientation control of induction machines based on a mutual MRAS scheme

机译:基于互MRAS方案的感应电机无传感器磁场定向控制

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摘要

A mutual model reference adaptive system (MRAS) is proposed to implement a position sensorless field-orientation control (FOC) of an induction machine. The reference model and adjustable model used in the mutual MRAS scheme are interchangeable. Therefore, it can be used to identify both rotor speed and the stator resistance of an induction machine. For the rotor speed estimation, one model is used as a reference model and another is the adjustable model. Pure integration and stator leakage inductance are removed from the reference model, resulting in robust performance in low and high speed ranges. For the stator resistance identification, the two models switch their roles. To further improve estimation accuracy of the rotor speed and stator resistance, a simple on-line rotor time constant identification is included. Computer simulations and experimental results are given to show its effectiveness.
机译:提出了一种互模型参考自适应系统(MRAS),以实现感应电机的无位置传感器磁场定向控制(FOC)。相互MRAS方案中使用的参考模型和可调模型是可互换的。因此,它可以用于识别感应电机的转子速度和定子电阻。对于转子速度估计,一种模型用作参考模型,另一种模型是可调模型。从参考模型中删除了纯积分和定子漏感,从而在低速和高速范围内实现了强大的性能。为了识别定子电阻,两个模型切换了它们的作用。为了进一步提高转子速度和定子电阻的估计精度,包括了简单的在线转子时间常数识别。计算机仿真和实验结果表明了其有效性。

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