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首页> 外文期刊>IEEE Transactions on Magnetics >DC Drift Error Mitigation Method for Three-Phase Current Reconstruction With Single Hall Current Sensor
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DC Drift Error Mitigation Method for Three-Phase Current Reconstruction With Single Hall Current Sensor

机译:单霍尔电流传感器用于三相电流重构的直流漂移误差缓解方法

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摘要

Magnetic field sensors, such as Hall current sensors, are widely used in permanent-magnet synchronous motors drive system. For the purpose of reducing cost and volume, the phase current reconstruction method is used in the motor drive system with only one current sensor. In this paper, a novel phase current reconstruction method is introduced. By arranging the single current sensor at a novel position, the proposed method is able to sample current in two zero voltage vectors. Then, a novel dc drift error mitigation method is proposed to eliminate the dc drift error in the Hall current sensor, which can influence the motor drive performance. The Clarke coordinate transformation is modified to decouple the dc drift error in the alpha-beta-axis current components. Then, a notch filter is adapted to estimate the dc drift component of the current sampling results, which can compensate the dc drift error in the Hall current sensor. The proposed method is validated by both simulation and experiments.
机译:诸如霍尔电流传感器之类的磁场传感器广泛用于永磁同步电动机驱动系统中。为了降低成本和体积,在只有一个电流传感器的电动机驱动系统中使用相电流重构方法。本文介绍了一种新颖的相电流重构方法。通过将单个电流传感器布置在新颖的位置,所提出的方法能够在两个零电压矢量中采样电流。然后,提出了一种新颖的直流漂移误差减轻方法,以消除霍尔电流传感器中的直流漂移误差,该误差会影响电动机的驱动性能。修改了Clarke坐标变换以解耦alpha-beta轴电流分量中的直流漂移误差。然后,陷波滤波器适用于估计电流采样结果的直流漂移成分,这可以补偿霍尔电流传感器中的直流漂移误差。仿真和实验验证了该方法的有效性。

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