单相并网逆变器LCL滤波器的磁集成

Donghua Pan, X. Ruan, Xuehua Wang, Chenlei Bao, Weiwei Li
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引用次数: 6

摘要

LCL滤波器因其对开关频率电流谐波的衰减性能优异而广泛应用于并网逆变器中。LCL滤波器有两个独立的电感器。需要大量的磁芯,并且必须为这两个电感器预留较大的体积。为了减小磁芯体积,本文介绍了这两种电感器的磁集成。由于两个电感之间的耦合会削弱LCL滤波器的衰减能力,因此选择了解耦磁积分。虽然共磁芯磁阻很难为零,但解耦磁积分方案仍然具有吸引力。在实验室搭建了一台6kw的样机,实验结果验证了所提出的磁集成方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic integration of an LCL filter for the single-phase grid-connected inverter
The LCL filter is widely used in grid-connected inverters due to its outstanding performance of attenuating the switching frequency current harmonics. An LCL filter has two individual inductors. Numbers of magnetic cores are required, and large volume has to be reserved for these two inductors. In order to reduce the core volume, magnetic integration of these two inductors is introduced in this paper. Since the attenuating ability of the LCL filter would be weakened by the coupling between the two inductors, decoupled magnetic integration is chosen consequently. Though the reluctance of the common core can hardly be zero, the decoupled magnetic integration scheme is still attractive. A 6-kW prototype is built in the lab, and the experimental results validate the effectiveness of the proposed magnetic integration scheme.
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