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Speed Sensorless Stator Flux-Oriented Control of Induction Motor in the Field Weakening Region Using Luenberger Observer

机译:基于Luenberger观测器的弱磁区域感应电动机无速度传感器定子磁通定向控制

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摘要

In a conventional speed sensorless stator flux-oriented (SFO) induction motor drive, when the estimated speed is transformed into the sampled-data model using the first-forward difference approximation, the sampled-data model has a modeling error which, in turn, produces an error in the rotor speed estimation. The error included in the estimated speed is removed by the use of a low pass filter (LPF). As the result, the delay of the estimated speed occurs in transients by the use of the LPF. This paper investigates the problem of a conventional speed sensorless SFO system due to the delay of the estimated speed in the field weakening region. In addition, this paper proposes a method to estimate exactly speed by using Luenberger observer. The proposed method is verified by the simulation and experiment with a 5-hp induction motor drive.
机译:在传统的无速度传感器定子磁链定向(SFO)感应电动机驱动器中,当使用第一正向差分近似将估计速度转换为采样数据模型时,采样数据模型会产生建模误差,进而导致建模误差在转子速度估计中产生误差。估计速度中包含的误差通过使用低通滤波器(LPF)消除。结果,通过使用LPF,估计速度的延迟出现在瞬态中。本文研究了传统的无速度传感器SFO系统由于磁场弱化区域中估计速度的延迟而导致的问题。此外,本文提出了一种使用Luenberger观测器精确估计速度的方法。通过5 hp感应电动机驱动器的仿真和实验验证了所提出的方法。

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