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Adaptive fuzzy logic speed-sensorless control improvement of induction motor for standstill and low speed operations

机译:静止和低速运行的异步电动机自适应模糊逻辑无速度传感器控制改进

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摘要

Purpose - This work proposes a method to improve the estimation performance at standstill and low speed operations of an adaptive fuzzy logic speed-sensorless field-oriented control of an induction motor. Design/methodology/approach - First, the speed estimation algorithm presented in Tursini et al., which it has been designed to consider constant speed operation, is modified in an attempt to reduce the estimation error. Second, the speed regulation by fuzzy logic controller (FLC) with fuzzy adapted gains (FAG) is proposed for speed regulation. The main features of the proposed algorithm are investigated and compared with those of the algorithm of (Tursini) considering different dynamic operating conditions. Findings - Simulation results clearly show the performance of the proposed algorithm. Originality/value - The proposed scheme is recommended for applications requiring robust speed control and field-orientation even in the presence of some key parameter deviations.
机译:目的-这项工作提出了一种方法,用于改善感应电动机的自适应模糊逻辑无速度传感器磁场定向控制在静止和低速运行时的估计性能。设计/方法/方法-首先,对Tursini等人提出的速度估计算法进行了修改,旨在降低恒速运行,以降低估计误差。其次,提出了具有模糊自适应增益(FAG)的模糊逻辑控制器(FLC)进行速度调节的方法。研究了该算法的主要特点,并与(Tursini)算法在不同动态操作条件下的特点进行了比较。结果-仿真结果清楚地表明了所提出算法的性能。独创性/值-即使在某些关键参数偏差的情况下,建议的方案也建议用于要求鲁棒的速度控制和磁场定向的应用。

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