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A stator current locus approach to induction machine parameter estimation

机译:定子电流轨迹的感应电机参数估计方法

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Induction machines are an attractive alternative to permanent magnet machines in transportation applications due to their ruggedness and lower cost of construction. However, high-performance control of induction machines requires accurate knowledge of the machine parameters. While parameters have traditionally been identified using the standard “no-load” and “locked-rotor” tests, these tests are not representative of normal operating conditions, and are not well suited to the commissioning of variable speed drives. This paper presents a new method for induction machine parameter identification using steady-state measurements, which is based on fitting data to the stator current locus for various slip frequencies. Numerical results confirm the method's high accuracy, while experimental results demonstrate its ability to characterize an induction machine over a range of flux levels which include magnetic saturation.
机译:感应电机由于其坚固性和较低的建造成本,在运输应用中是永磁电机的一种有吸引力的替代品。但是,感应电机的高性能控制需要对电机参数的准确了解。传统上,使用标准的“空载”和“锁定转子”测试来识别参数,但是这些测试不能代表正常的工作条件,也不适合用于变速驱动器的调试。本文提出了一种用于稳态测量的感应电机参数识别的新方法,该方法基于对各种滑差频率的定子电流轨迹拟合数据。数值结果证实了该方法的高精度,而实验结果表明,该方法能够在包括磁饱和在内的一系列磁通水平范围内表征感应电机。

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