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Optimal State Control of Induction Machine with Improved Stator Flux Estimation

机译:改进定子磁链估计的异步电机最优状态控制

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摘要

The concept of stator flux orientation control of induction motor (IM) based on the optimal regulator theory has been introduced in the literature. In this paper, the idea is expanded to improve the performance at low speeds by proposing programmable low-pass filter (LPF) for flux vector synthesis. The developed control structure provides high-quality signal for the stator frequency. This signal is utilized here to determine the filter coefficients as well as the vector rotator. Compared with other programmable LPF implementations, the presented one is likely to provide better results since it is independent of the machine equations and doesn't impose additional dynamic delay. Simulation and experimental studies on 1-kW three-phase induction motor are provided to validate the method.
机译:文献中引入了基于最优调节器理论的感应电动机定子磁链定向控制的概念。在本文中,通过提出用于磁通矢量合成的可编程低通滤波器(LPF),扩展了该思想以提高低速性能。先进的控制结构可为定子频率提供高质量的信号。该信号在这里用于确定滤波器系数以及矢量旋转器。与其他可编程LPF实现方案相比,本文提出的方案可能会提供更好的结果,因为它与机器方程式无关,并且没有施加额外的动态延迟。通过对1kW三相感应电动机的仿真和实验研究验证了该方法的有效性。

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