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Discrete-Time Modeling and Control Based on Field Orientation for Induction Motors

机译:基于感应电动机现场定向的离散时间建模与控制

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摘要

In this article, discrete-time direct and indirect field-oriented controllers (FOCs) for induction motors (IMs) are designed. Based on a discrete-time stationary reference frame model for IMs, which was obtained by means of a variational integrator, the stationary model is oriented to the field. Then, discrete-time FOCs, in the direct and indirect versions, are designed for tracking of reference signals for the rotor velocity and the rotor flux modulus. A simulation study was carried out, and for comparison purposes, discretized continuous-time FOCs were also simulated for three sampling periods. It was put in evidence that the proposed discrete-time controllers performed better than the discretized counterparts when the sampling period was increased. Real-time experiments were carried out for discrete-time direct and indirect FOCs, where their performances were similar to those predicted by simulations.
机译:在本文中,设计了用于感应电机(IMS)的离散时间直接和间接的面向现场控制器(FOCS)。基于通过变分积分器获得的IMS的离散时间静止参考帧模型,静止模型取向该领域。然后,在直接和间接版本中的离散时间FOCS被设计用于跟踪转子速度和转子磁通模量的参考信号。进行了模拟研究,并且为了比较目的,还模拟了三个采样期的离散连续时间Focs。提出了所提出的离散时间控制器在采样期增加时比离散的对应物更好地进行。进行实时实验,用于离散时间直接和间接FOCS,其中他们的性能与模拟预测的表现相似。

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