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Current Jump Mechanism and Suppression in Paralleled Three-level Inverters with Space Vector Modulation

机译:空间矢量调制的并联三电平逆变器的电流跳变机理及抑制

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In paralleled three-phase three-level voltage source inverters, sometimes the currents of paralleled inverters need to be separately adjusted to control power sharing, and the reference vectors will differ in phase and amplitude. In other cases, although the current references of the paralleled inverters are set to be the same, the d-axis and q-axis current closed-loop control outputs of each converter cannot be exactly the same due to the asymmetry in hardware or software. As a result, the reference vector of each inverter may also be different in terms of phase and amplitude. When conventional three-level space vector pulse width modulation (SVPWM) is applied, periodical jump can be observed in the phase current of each inverter and the zero sequence circulating current (ZSCC). This paper investigates the current jump phenomenon in paralleled three-level inverters with space vector modulation (SVM). The mechanism that causes the current jump is illustrated. A modulation method to eliminate this current jump is proposed. Simulation and experimental results are presented to verify the effectiveness of the proposed method and conducted analysis.
机译:在并联三相三电平电压源逆变器中,有时需要分别调节并联逆变器的电流以控制功率共享,并且参考矢量的相位和幅度会有所不同。在其他情况下,尽管将并联逆变器的电流参考设置为相同,但由于硬件或软件的不对称性,每个转换器的d轴和q轴电流闭环控制输出不能完全相同。结果,每个逆变器的参考矢量在相位和幅度方面也可能不同。当应用常规的三级空间矢量脉冲宽度调制(SVPWM)时,可以观察到每个逆变器的相电流和零序循环电流(ZSCC)的周期性跳变。本文研究了具有空间矢量调制(SVM)的并联三电平逆变器中的电流跳变现象。说明了导致电流跳变的机制。提出了一种消除该电流跳变的调制方法。仿真和实验结果表明,验证了所提方法的有效性,并进行了分析。

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