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Torque Ripple Reduction in PMSM Drive based on Instantaneous Voltage Control Technique

机译:基于瞬时电压控制技术的PMSM驱动器扭矩脉动减少

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This paper illustrates the advantage of using the Instantaneous Voltage Control technique for Direct Torque Control (DTC) of Permanent Magnet Synchronous Machine (PMSM). In this method, time error signals are generated directly from the reference phase voltages and the elegance being it directly generating the switching times of different phases without the need for calculating sector in which the voltage vector lies instantaneously. This reduces the mathematical complexity when compared to the existing method and inclines towards the easy implementation. This method reduces the ripple content in both torque and stator flux at different operating speeds. The problem of variable switching frequency occurring in conventional DTC at different operating speeds is addressed in this method. Especially at lower speeds, the frequency of occurrence of null vector increases which in turn increases the ripple content in the machine dynamics. This issue is solved by maintaining constant switching frequency independent of operating speed achieved by space vector pulse width modulation (SVPWM). A comparison is made between the conventional DTC and proposed DTC. From simulation results, it is observed that ripple content in torque and stator flux have reduced in the proposed algorithm when compared to conventional DTC.
机译:本文说明了利用永磁同步机(PMSM)直接扭矩控制(DTC)的瞬时电压控制技术的优点。在该方法中,将时间误差信号直接从参考相电压和优雅生成,它直接产生不同阶段的切换时间,而不需要计算电压矢量瞬间所在的扇区。与现有方法相比,这减少了数学复杂性并倾斜易于实现。该方法以不同的操作速度降低扭矩和定子通量的纹波内容。在此方法中解决了以不同的操作速度以不同的操作速度发生在传统DTC中的可变开关频率的问题。特别是在较低的速度下,空向量的发生频率增加,这又增加了机器动态中的纹波内容。通过维护恒定的开关频率独立于空间矢量脉冲宽度调制(SVPWM)而无关的恒定切换频率来解决此问题。在传统的DTC和提出的DTC之间进行比较。从仿真结果看,观察到与传统DTC相比,在所提出的算法中,扭矩和定子通量中的纹波含量降低了扭矩和定子通量。

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