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Hybrid EAs for Backup Sensorless Control of PMSM Drives

机译:用于对PMSM驱动器进行无传感器备份控制的混合EA

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摘要

This paper presents a robust strategy to increase the reliability of Permanent Magnet Synchronous Motor drives against encoder or resolver failures. If the position sensor fails, the "failure and recovery manager" switches the drive in sensorless mode, i.e., the control system uses the speed and position feedback given by a Sliding-Mode observer in place of the sensor. As the accuracy of the sensorless control depends on the tuning of the observer parameters according to the motor conditions, the Sliding-Mode observer is periodically tuned during the sensor-based control of the drive. A fast and robust tuning of the observer can be obtained by Hybrid Evolutionary Algorithms. This prevents untimely sensored-to-sensorless switching due to speed transients and allows better performances of the sensorless control when the position sensor fails actually. The results carried out prove that the position sensor failures do not affect the drive operation, and proposed HE A outperforms the standard search algorithms.
机译:本文提出了一种鲁棒的策略,可以提高永磁同步电动机驱动器针对编码器或旋转变压器故障的可靠性。如果位置传感器发生故障,则“故障和恢复管理器”将驱动器切换为无传感器模式,即控制系统将使用滑模观察器给出的速度和位置反馈来代替传感器。由于无传感器控制的精度取决于根据电机条件调整观察者参数的方式,因此在基于传感器的驱动器控制期间会定期调整滑模观察器。可以通过混合进化算法获得对观察者的快速而稳定的调整。这样可以防止由于速度瞬变而造成的过时的传感器到无传感器的切换,并且当位置传感器实际发生故障时,可以实现无传感器控制的更好性能。进行的结果证明,位置传感器故障不会影响驱动器的运行,并且提出的HE A优于标准搜索算法。

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