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LCL Filter Design and Inductor Current Ripple Analysis for a Three-Level NPC Grid Interface Converter

机译:三电平NPC网格接口转换器的LCL滤波器设计和电感器电流纹波分析

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摘要

The harmonic filter for a three-level neutral-point-clamped (NPC) grid interface converter is designed in this paper with good filtering performance and small component size. topology is selected because of the attenuation and size tradeoff. The design of the inverter-side inductor is emphasized due to its cost. A detailed inductor current ripple analysis is given based on the space vector modulation. The analysis derives the inductor volt-second and the maximum current ripple equation in line cycle. It also reveals the switching cycle current ripple distribution over a line cycle, with the consideration of power factor. The total system loss is calculated with different ripple current. Inductor is determined by the loss and size tradeoff. Also the capacitor- and grid-side inductor is designed based on attenuation requirement. Different damping circuits for filter are compared and investigated in detail. The filter design is verified by both simulation and 200-kVA three-level NPC converter hardware.
机译:本文设计了一种用于三电平中性点钳位(NPC)电网接口转换器的谐波滤波器,该滤波器具有良好的滤波性能和较小的元件尺寸。选择拓扑是因为衰减和尺寸折衷。逆变器侧电感的设计由于其成本而被强调。基于空间矢量调制,给出了详细的电感器电流纹波分析。分析得出线周期中的电感伏特-秒和最大电流纹波方程。它还揭示了在考虑功率因数的情况下,线路周期内的开关周期电流纹波分布。用不同的纹波电流计算总的系统损耗。电感由损耗和尺寸折衷决定。电容器和电网侧电感器也是基于衰减要求而设计的。比较并详细研究了滤波器的不同阻尼电路。滤波器设计已通过仿真和200 kVA三级NPC转换器硬件进行了验证。

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