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Predictive Instantaneous Torque Control for Disc Coreless Permanent Magnet Synchronous Motor With the Current Source Chopper

机译:带有电流源斩波器的无盘圆盘式永磁同步电动机的瞬时转矩预测控制

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摘要

The disc coreless permanent magnet synchronous motor has several advantages, such as strong overload capacity, zero cogging torque, sinusoidal back EMF, and linear parameters. The motors tend to have low inductance because of the coreless structure. There is a stringent current ripple in the motor winding that produces unacceptable torque ripple if driven from conventional drivers with a pulse width modulation control method based on voltage source inverter. To solve this problem, a predictive instantaneous torque control method based on a current source chopper is proposed in this paper. As electromagnetic torque depends on the stator current magnitude and rotor angle, the relationship between these two variables is discussed. The current amplitude and switch state of the inverter are computed according to the rotor position, and the stator current magnitude can be regulated in real time by the current source chopper. The proposed control system can dramatically reduce the current ripple caused by low inductance and the validity of the proposed control method is verified by simulation and experimental results.
机译:盘式无芯永磁同步电动机具有多个优势,例如强大的过载能力,零齿槽转矩,正弦反电动势和线性参数。由于无芯结构,电动机的电感往往较低。如果使用基于电压源逆变器的脉冲宽度调制控制方法从常规驱动器驱动,则电机绕组中存在严格的电流纹波,会产生不可接受的转矩纹波。针对这一问题,提出了一种基于电流斩波器的瞬时转矩预测控制方法。由于电磁转矩取决于定子电流大小和转子角度,因此将讨论这两个变量之间的关系。根据转子位置计算逆变器的电流幅度和开关状态,并且可以通过电流源斩波器实时调节定子电流大小。所提出的控制系统可以显着降低由低电感引起的电流纹波,并且通过仿真和实验结果验证了所提出控制方法的有效性。

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