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An optimal solution for operating a three-phase variable frequency drive from a single-phase AC source

机译:从单相交流电源运行三相变频驱动器的最佳解决方案

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When using a three-phase Variable Frequency Drive (VFD) powered from a single-phase AC source, output power of the drive has to be limited to prevent higher component stresses in the drive and in the input power system. To overcome this issue, many VFD manufacturers de-rate the drive. Typically, the output frequency of the drive is limited, based on the DC bus voltage ripple so that the DC bus capacitors are not overstressed. Though the traditional method reduces the stress in the DC capacitors, it does not take into account the stresses in other components of the VFD, especially the input diodes and terminal blocks. In this paper, a new method of protecting the drive using the motor q-axis current is proposed. The motor q-axis current, is shown to have information pertaining to the stresses in various parts of the VFD including the input diodes, input terminal block, and the DC bus capacitors. The output power is proposed to be limited by reducing the output frequency based on the average and ripple amplitude of the q-axis current instead of the DC bus voltage ripple. To prove the concept, the traditional DC bus voltage ripple based fold-back method is experimentally compared with the proposed method using a low power VFD fed from a single-phase AC source.
机译:当使用由单相交流电源供电的三相变频驱动器(VFD)时,必须限制驱动器的输出功率,以防止驱动器和输入电源系统中出现更高的组件应力。为解决此问题,许多VFD制造商降低了驱动器的等级。通常,基于直流母线电压纹波来限制驱动器的输出频率,以使直流母线电容器不会承受过大的压力。尽管传统方法降低了直流电容器中的应力,但并未考虑VFD其他组件(尤其是输入二极管和接线盒)中的应力。本文提出了一种利用电动机q轴电流保护驱动器的新方法。电机q轴电流显示为具有与VFD各个部分(包括输入二极管,输入端子块和DC总线电容器)中的应力有关的信息。建议通过基于q轴电流的平均值和纹波幅度而不是DC总线电压纹波来降低输出频率来限制输出功率。为了证明这一概念,将传统的基于直流母线电压纹波的折返方法与使用单相交流电源馈电的低功率VFD提出的方法进行了实验比较。

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