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A novel LCL filter parameter design method basing on resonant frequency optimization of three-level NPC grid connected inverter

机译:基于三电平NPC并网逆变器谐振频率优化的新型LCL滤波器参数设计方法

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摘要

For high power three-level NPC grid connected inverter, which has the characteristics of low switching frequency and complex harmonic distribution of output current waveform, it deduces the total output filter inductor expression and researches the relational expression between inductance ratio, damping ratio and resonant frequency, harmonic attenuation ratio, as well as damping power. Based on this, an optimized resonant frequency LCL filter design scheme which can also reduce the damping power loss of three-level NPC grid connected inverter is proposed. Through the comprehensive theoretical analysis, the proposed scheme calculates the range of key parameters of the LCL output filter, meanwhile, it ensures the filtering effect as well as reduces the system cost. By paralleling a small damping inductor with the damping resistor, it reduces the damping loss and increases the efficiency of the system. Feasibility and effectiveness of the optimized scheme are validated by simulation and experimental results.
机译:对于具有低开关频率,输出电流波形谐波分布复杂的特点的大功率三电平NPC并网逆变器,推导了输出滤波器电感的总表达式,并研究了电感比,阻尼比和谐振频率之间的关系式。 ,谐波衰减比以及阻尼功率。在此基础上,提出了一种优化的谐振频率LCL滤波器设计方案,该方案还可以减小三电平NPC并网逆变器的阻尼功率损耗。通过综合的理论分析,提出的方案计算了LCL输出滤波器的关键参数范围,同时保证了滤波效果,降低了系统成本。通过将一个小的阻尼电感与阻尼电阻并联,可以减少阻尼损耗并提高系统效率。仿真和实验结果验证了该优化方案的可行性和有效性。

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