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Sensorless position control of induction motors-an emerging technology

机译:感应式电动机的无传感器位置控制 - 新兴技术

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Concepts for the sensorless position control of induction motor drives rely on anisotropic properties of the machine rotor. Such anisotropies can be incorporated as periodic variations of magnetic saliencies in various ways. The built-in spatial anisotropy is detected by injecting a high-frequency flux wave into the stator. The resulting stator current harmonics contain frequency components that depend on the rotor position. Models of the rotor saliency serve to extract the rotor position signal using phase-locked loop techniques. A different approach makes use of the parasitic effects that originate from the discrete winding structure of a cage rotor. It has the merit of providing high spatial resolution for incremental positioning without sensor. The practical implementation of sensorless position identification, and of a high-accuracy position control system are reported.
机译:感应电机的无传感器位置控制的概念驱动器依靠机器转子的各向异性特性。这种各向同性可以作为各种方式作为磁性渗透的周期性变化。通过将高频通量波注入定子来检测内置空间各向异性。所产生的定子电流谐波包含取决于转子位置的频率分量。转子显着的模型用于使用相位锁定的环技术提取转子位置信号。一种不同的方法利用来自笼子转子的离散绕组结构的寄生效应。它具有提供高空间分辨率的优点,用于无需传感器的增量定位。报道了无传感器位置识别和高精度位置控制系统的实际实现。

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