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A novel, robust DSP-based indirect rotor position estimation for permanent magnet AC motors without rotor saliency

机译:基于鲁棒的DSP基于间接转子位置估计,用于无转子显着性的永磁交流电动机

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摘要

This paper proposes and implements a novel rotor position sensorless technique for PM AC motor drives, which allows acceleration from standstill and can operate under various practical operating conditions including transient speed changes. The technique developed here relies on the measurement of the phase voltages and currents of the motor. It uses the incremental values of flux linkage, and the back-EMF functions to estimate incremental rotor position. Using a phase-locked loop (PLL) algorithm, an internal closed-loop correction algorithm can correct rotor position estimation drift, which may be due to the motor parameter variations or measurement inaccuracies. The method is implemented in closed-loop using a digital signal processor (DSP), and details of the implementation are provided in the paper. To demonstrate accuracy, robustness and reliability of the position estimation scheme, the paper presents a number of real-time experimental results, including dynamic operating conditions.
机译:本文提出并实现了一种用于PM AC电动机驱动器的新型转子位置无传感器技术,其允许从静止的加速度加速,并且可以在包括瞬态速度变化的各种实际操作条件下运行。此处开发的技术依赖于测量电动机的电压和电流。它使用通量链接的增量值,以及反态功能以估计增量转子位置。使用锁相环(PLL)算法,内部闭环校正算法可以校正转子位置估计漂移,这可能是由于电动机参数变化或测量不准确。该方法使用数字信号处理器(DSP)在闭环中实现,并且在纸上提供了实现的细节。为了证明位置估计方案的准确性,鲁棒性和可靠性,纸张呈现了许多实时实验结果,包括动态操作条件。

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