可再生能源背靠背变流器升压电感设计的思考

M. Fioretto, P. Ladoux, P. Marino, G. Raimondo, L. Rubino, N. Serbia
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引用次数: 13

摘要

本文讨论了基于同步有源前端(SAFE)的PWM背靠背变换器中变换器电感设计的考虑。这被认为是最有效的转换器拓扑之一,它成功地管理了在公共耦合点(PCC)的高功率尺寸和功率质量要求之间的艰难权衡。在可再生能源领域,在风力发电场,由于发电机的规模越来越大,这种权衡变得越来越困难。尽管变换器的所有设计参数都会影响其谐波产生的性能,但变换器电感起着关键的作用。电感的设计是根据施加的电能质量要求和期望的功率速率来评估一个允许范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Considerations on boost inductor design in back-to-back converters for renewable energy
In this paper, considerations on converter inductor design in PWM back-to-back converter based on Synchronous Active Front End (SAFE) are discussed. This is considered one of the most efficient converter topology that successfully manages the hard trade-off between high power size and power quality requirements at the Point of Common Coupling (PCC). In renewable energy, in wind farm, this trade-off is getting harder due to the increasing size of generators. Despite all converter design parameters influence the performances in terms of harmonic generation, especially the converter inductor assumes a key role. The design of the inductance is carried out evaluating an admissible range according to imposed power quality requirements and power rate desired.
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