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Dead time compensation with variable resonant controller for induction motor drive system

机译:感应电动机驱动系统的带可变谐振控制器的空载时间补偿

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For an inverter drive induction motor control system, a typical problem encountered is the nonlinear voltage gain caused by the non ideal characteristics of the power inverter. The switch dead time will introduce waveform distortion and fundamental voltage drop to the system. If not compensated, such distortions will introduce harmonic components which will cause additional loss in the induction machine. Therefore, the impact of harmonics caused by switching dead time are essential to induction motor drive design, especially when the motor is running at low speed. In this paper, a dead time compensation method is proposed. By adding a 6 order resonant controller to the existing current loop PI controller, the negative sequence 5 order and positive sequence 7 order current harmonics caused by the dead time are eliminated. The overall control scheme is implemented in synchronous rotating d-q reference frame. The controller resonant frequency is 6 times to the synchronous frequency, which is calculated with mechanical speed and slip. Experiment results of steady state and dynamic response studies are presented to validate the effectiveness of the proposed method.
机译:对于逆变器驱动感应电动机控制系统,遇到的典型问题是由功率逆变器的非理想特性引起的非线性电压增益。开关死区时间将给系统带来波形失真和基波电压降。如果不进行补偿,这种失真将引入谐波分量,这将在感应电机中引起额外的损耗。因此,由开关死区时间引起的谐波影响对于感应电动机驱动器设计至关重要,尤其是在电动机低速运行时。本文提出了一种空载时间补偿方法。通过在现有的电流环路PI控制器中添加6阶谐振控制器,可以消除由空载时间引起的5阶负序和7阶正序电流谐波。总体控制方案在同步旋转d-q参考系中实现。控制器的谐振频率是同步频率的6倍,后者是根据机械速度和滑差计算得出的。提出了稳态和动态响应研究的实验结果,以验证该方法的有效性。

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