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Reduction of the Circulating Current Among Parallel NPC Inverters

机译:平行NPC逆变器之间的循环电流降低

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摘要

In medium/high power applications, including smart transformers, active power filters, and wind turbines, three-level neutral-point-clamped (NPC) inverters proved to be a reliable solution, providing high efficiency and low harmonic distortion. In practice, several NPCs are parallel connected and operated in interleaved manner to further increase the power handling and reduce the line filters size. However, if such configuration has a common dc-link, high-frequency zero-sequence circulating current (HF-ZSCC) arises among the inverters, increasing power losses of the switching devices and propagating the stress on the dc-capacitors. Moreover, the amplitude of the HF-ZSCC is inversely proportional to the filter inductance size, therefore in real applications, it can reach hundreds of amperes even with relatively low output currents. The research on the HF-ZSCC is mostly concentrated on two-level inverters for low voltage grids and traction applications, where the inductance size is relatively big and the HF-ZSCC does not affect the system efficiency. Differently, NPCs provide higher switching degree of freedom and more sophisticated methods can be applied to reduce the HF-ZSCC. This article investigates a double-reference pulsewidth modulation (DRPWM) as solution for diminishing the HF-ZSCC in paralleled NPCs. The performance of DRPWM method is confirmed by both simulation and experiments, performed on a 1.6-MVA system.
机译:在中型/高功率应用中,包括智能变压器,有源电力滤波器和风力涡轮机,三级中性点钳位(NPC)逆变器被证明是一种可靠的解决方案,提供高效率和低谐波失真。在实践中,几个NPC是平行的连接和操作以交织方式操作,以进一步增加功率处理并减少线滤波器尺寸。然而,如果这种配置具有公共直流链路,则逆变器之间产生的高频零序循环电流(HF-ZSCC),增加开关装置的功率损耗并在DC电容上传播应力。此外,HF-ZSCC的幅度与滤波器电感尺寸成反比,因此在真实应用中,即使具有相对低的输出电流,它也可以达到数百台安培。对HF-ZSCC的研究大多集中在两级逆变器上,用于低压电网和牵引应用,其中电感尺寸相对较大,HF-ZSCC不会影响系统效率。不同地,NPC提供更高的开关自由度,可以应用更复杂的方法来减少HF-ZSCC。本文调查了双参考脉冲宽度调制(DRPWM)作为在并联NPC中减少HF-ZSCC的解决方案。 DRPWM方法的性能通过仿真和实验确认,在1.6-MVA系统上执行。

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