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Neutral Point Potential Balancing Algorithm at Low Modulation Index for Three-Level Inverter Medium Voltage Drives

机译:用于三级逆变器中电压驱动器低调制指数的中性点电位平衡算法

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Three-level inverters produce low harmonic distortion of the ac currents even when operated at moderate switching frequency. This makes them the preferred candidates for high-power, medium voltage applications. To improve the utilization of the semiconductor devices, synchronous optimal pulsewidth modulation is employed. This permits reducing the switching frequency to very low values. Carrier modulation is maintained in the lower range of the modulation index. Operation at very low switching frequency increases the steady-state ripple of the neutral point potential. An intrinsic natural balancing mechanism of the neutral point clamped inverter topology eliminates long-term neutral point potential offsets. Transient conditions, however, may create successive increments of the offset to high values, which requires fast compensation. The novel method of selecting the appropriate redundant inverter subbridge meets this requirement without incurring additional penalties. The effectiveness of the approach is documented by experiments obtained from a medium voltage motor drive fed by a 1-MVA three-level inverter.
机译:即使在适度的开关频率下操作,三级逆变器也会产生交流电流的低谐波失真。这使得它们成为高功率中电压应用的首选候选者。为了改善半导体器件的利用,采用同步最佳脉冲脉冲调制。这允许将切换频率降低到非常低的值。载波调制保持在调制指数的较低范围内。在非常低的开关频率下操作增加了中性点电位的稳态纹波。中性点夹紧逆变器拓扑的固有自然平衡机构消除了长期中性点电位偏移。然而,瞬态条件可能会使偏移量的连续增量为高值,这需要快速补偿。选择合适的冗余逆变器子桥的新方法符合此要求,而不会产生额外的惩罚。通过由由1-MVA三级逆变器供给的中等电压电动机驱动器获得的实验来记录该方法的有效性。

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