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A robust air-gap flux estimation for speed sensorless vector control of double-star induction machine

机译:双星感应电机无速度传感器矢量控制的鲁棒气隙通量估计

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摘要

The paper presents a new direct field-oriented control (DFOC) for double-star induction machine (DSIM) drives using the stator currents. First, we propose a new algorithm to estimate air-gap flux for speed sensorless air-gap flux orientation control. Compared to the previous DFOC schemes the new one is independent from any motor parameter variation, specially on the stator resistance. Then, the DFOC is associated with a low pass filter (LPF) to solve the dc drift problems caused by the pure integration of air-gap flux. In the present paper, the rotor resistance is estimated by an algorithm using Lyapunov theory. Good results have been obtained in the benchmark simulations.
机译:本文提出了一种使用定子电流的双星感应电机(DSIM)驱动器的新型直接磁场定向控制(DFOC)。首先,我们提出了一种新的算法来估计气隙通量,用于无速度传感器气隙通量定向控制。与以前的DFOC方案相比,新方案不受任何电动机参数变化的影响,特别是在定子电阻上。然后,DFOC与低通滤波器(LPF)关联,以解决由气隙通量的纯积分引起的直流漂移问题。在本文中,转子电阻是通过使用Lyapunov理论的算法估算的。在基准仿真​​中已经获得了良好的结果。

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