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集成级间变压器的双交错高功率并网变换器LCL滤波器优化

Optimization of LCL Filter With Integrated Intercell Transformer for Two-Interleaved High-Power Grid-Tied Converters

语言:

中文摘要

为提升系统功率等级,电压源变换器(VSC)的并联技术至关重要。本文研究了交错并联(ILV)技术,通过对开关信号进行交错处理,相比硬并联(HP)显著改善了谐波频谱。文章重点探讨了集成级间变压器的LCL滤波器优化设计,旨在提升高功率并网变换器的电能质量与功率密度。

English Abstract

Paralleling of voltage source converters (VSCs) with a limited maximum output power is essential when the power rating of a system must be increased. Interleaving (ILV) of the switching signals for parallel-connected VSCs provides a better harmonic spectrum than hard paralleling (HP), i.e., applying identical signals to all VSCs. This can be particularly beneficial for grid-tied converters, since ...
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SunView 深度解读

该研究对于阳光电源的组串式逆变器及大功率集中式逆变器产品线具有极高的参考价值。随着光伏电站向更高功率密度演进,交错并联技术结合集成磁件的LCL滤波器设计,能有效减小磁性元件体积并优化谐波性能,从而降低系统成本并提升效率。建议研发团队关注集成级间变压器在多路并联组串式逆变器中的应用,以优化高功率等级下的散热与电磁兼容(EMC)表现,进一步巩固阳光电源在大型地面电站及工商业逆变器领域的竞争优势。