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Position sensorless direct torque control for six-phase permanent magnet synchronous motor under two-phase open circuit

机译:两相开路下六相永磁同步电动机的无位置传感器直接转矩控制

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摘要

A position sensor is usually required in the existing fault-tolerant direct torque control (FT-DTC) system for the multiphase permanent magnet synchronous motor (PMSM). Thus, the volume, weight, and cost of the system is increased, and the reliability is decreased. The conventional high-performance position sensorless strategies for the multiphase motor under fault-free condition cannot be directly applied to FT-DTC system. To improve this situation, a high-speed position sensorless FT-DTC strategy for a six-phase symmetrical winding PMSM with two opened phases is proposed in this study. Firstly, modified variables and a new rotating coordinate system are defined to achieve the symmetrical and decoupled mathematical model. Secondly, a stator flux observer based on the modified variables and a new coordinate system is proposed. According to the current model of modified stator flux, the estimated modified stator current can be achieved. Then, the estimated error of the modified stator current is sent to the integrator of the modified stator flux observer to correct the voltage model. Finally, the proposed stator flux observer is applied in FT-DTC for six-phase PMSM with two opened phases to realize the position sensorless operation at high speed. The experimental results verify the feasibility and effectiveness of the proposed strategy.
机译:现有的多相永磁同步电动机(PMSM)的容错直接转矩控制(FT-DTC)系统中通常需要位置传感器。因此,增加了系统的体积,重量和成本,并且降低了可靠性。在无故障条件下,用于多相电动机的常规高性能无位置传感器策略无法直接应用于FT-DTC系统。为了改善这种情况,本研究提出了一种具有两个开相的六相对称绕组PMSM的高速无位置传感器FT-DTC策略。首先,定义修改变量和新的旋转坐标系,以实现对称且解耦的数学模型。其次,提出了一种基于修正变量和新坐标系的定子磁链观测器。根据修正定子磁通的电流模型,可以实现估计的修正定子电流。然后,将修改后的定子电流的估计误差发送到修改后的定子磁通观测器的积分器,以校正电压模型。最后,将所提出的定子磁链观测器应用于FT-DTC中,用于具有两个断相的六相PMSM,以实现高速无位置传感器操作。实验结果证明了该策略的可行性和有效性。

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