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首页> 外文期刊>Industry Applications, IEEE Transactions on >Novel Field-Weakening Control Scheme for Permanent-Magnet Synchronous Machines Based on Voltage Angle Control
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Novel Field-Weakening Control Scheme for Permanent-Magnet Synchronous Machines Based on Voltage Angle Control

机译:基于电压角控制的永磁同步电机弱磁控制新方案

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摘要

This paper presents a novel voltage-angle-based field-weakening control scheme appropriate for the operation of permanent-magnet synchronous machines over a wide range of speed. At high rotational speed, the stator voltage is limited by the inverter dc bus voltage. To control the machine torque above the base speed, the proposed method controls the angle of the limited stator voltage by the integration of gain-scheduled q-axis current error. The stability of the drive is increased by a feedback loop, which compensates dynamic disturbances and smoothes the transition into field weakening. The proposed method can fully utilize the available dc bus voltage. Due to its simplicity, it is robust to the variation of machine parameters. Excellent performance of the proposed method is demonstrated through the experiments performed with and without speed and position sensors.
机译:本文提出了一种新颖的基于电压角的弱磁控制方案,适用于永磁同步电机在较大速度范围内的运行。在高转速下,定子电压受逆变器直流总线电压的限制。为了将电机转矩控制在基本速度以上,建议的方法通过对增益预定的q轴电流误差进行积分来控制有限定子电压的角度。反馈回路提高了驱动器的稳定性,该回路补偿了动态干扰并平滑了向弱磁的过渡。所提出的方法可以充分利用可用的直流总线电压。由于其简单性,它对机器参数的变化具有鲁棒性。通过在有和没有速度和位置传感器的情况下进行的实验证明了该方法的出色性能。

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