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(07E701) Sensor-less pseudo-sinusoidal drive for a permanent-magnet brushless ac motor

机译:(07E701)用于永磁无刷交流电动机的传感器较少的伪正弦驱动器

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The precise rotor-position information is required for a permanent-magnet brushless ac motor (BLACM) drive. In the conventional sinusoidal drive method, either an encoder or a resolver is usually employed. For position sensor-less vector control schemes, the rotor flux estimation and torque components are obtained by complicated coordinate transformations. These computational intensive methods are susceptible to current distortions and parameter variations. To simplify the method complexity, this work presents a sensor-less pseudo-sinusoidal drive scheme with speed control for a three-phase BLACM. Based on the sinusoidal drive scheme, a floating period of each phase current is inserted for back electromotive force detection. The zero-crossing point is determined directly by the proposed scheme, and the rotor magnetic position and rotor speed can be estimated simultaneously. Several experiments for various active angle periods are undertaken. Furthermore, a current feedback control is included to minimize and compensate the torque fluctuation. The experimental results show that the proposed method has a competitive performance compared with the conventional drive manners for BLACM. The proposed scheme is straightforward, bringing the benefits of sensor-less drive and negating the need for coordinate transformations in the operating process.
机译:精确的转子位置信息需要的永磁无刷交流电动机(BLACM)驱动器。在传统的正弦驱动方法,无论是编码器或分解器通常采用。对于位置传感器矢量控制方案,转子磁通估计和转矩分量由复杂坐标变换获得的。这些计算密集的方法很容易受到当前扭曲和参数变化。为了简化该方法的复杂性,这项工作提出有用于三相BLACM速度控制的无传感器伪正弦驱动方案。基于所述正弦驱动方案中,每个相电流的浮动期间将插入反电动势检测。零交叉点是由所提出的方案直接确定,并且转子磁位置和转子速度可以同时进行估计。关于各种活性角度周期几个实验进行。此外,被包括在电流反馈控制以最小化和补偿扭矩波动。实验结果表明,与常规的驱动方式为BLACM相比所提出的方法具有竞争力的性能。该方案很简单,把传感器驱动的好处,并为否定在操作过程中坐标变换的需求。

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