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Robust Active Fault Tolerant Control for Five-Phase PMSM against Speed Sensor Failures

机译:五相PMSM对速度传感器故障的强大主动容错控制

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The speed sensor is one of the most important parts of the five-phase Permanent Magnet Synchronous Motor (PMSM) drive, and the most sensitive sensor to the external or internal perturbation. In this framework, this paper is devoted to the Active Fault Tolerant Control (AFTC) of the five-phase PMSM. Based on a switching system between a real and virtual sensor, which is the Unknown Input Observer (UIO), and between two different control techniques, the system can maintain its high performance and efficiency. The PMSM is mainly controlled by PI regulator, but with the presence of high uncertainty or under a fault condition, the regulation system commute to the sensorless control mode with the Backstepping regulator. Simulated results justify the effectiveness of the proposed AFTC used to drive the five-phase PMSM under different operation condition.
机译:速度传感器是五相永磁同步电动机(PMSM)驱动器的最重要的部分之一,以及最敏感的传感器到外部或内部扰动。 在本框架中,本文致力于五相PMSM的主动容差控制(AFTC)。 基于真实和虚拟传感器之间的交换系统,这是未知的输入观察者(UIO),并且在两个不同的控制技术之间,系统可以保持其高性能和效率。 PMSM主要由PI调节器控制,但在存在高不确定性或在故障状态下,调节系统与背插管稳压器通勤到无传感器控制模式。 模拟结果证明了所提出的AFTC的有效性用于在不同操作条件下驱动五相PMSM。

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