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Compact three-phase AC inductor network for PFC converter using magnetic coupled technique

机译:采用磁耦合技术的用于PFC转换器的紧凑型三相交流电感器网络

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Three-phase power factor correction (PFC) converters have been widely utilized in industrial power applications to improve the power factor and reduce current harmonics in three-phase power grid. The PFC converters commonly incorporate large-sized inductors as a noise filter to suppress the noise emission to the grid. However, as many other power converters, the PFC converters are intensely required to achieve high power density by reducing the size of the inductors. The purpose of this paper is to propose a magnetic structure to miniaturize the inductors. The proposed magnetic structure consists of an integrated magnetic component and a three-phase common-mode choke. By integrating the inductors, the proposed magnetic structure can miniaturize the magnetic core volume, while keeping the saturation current level and the noise filtering capability unchanged. Experiment was carried out to evaluate the appropriateness of the proposed magnetic structure as well as possible volume reduction. As a result, 32.2% volume reduction was found in the proposed magnetic structure without deterioration of the filtering capability.
机译:三相功率因数校正(PFC)转换器已广泛用于工业电源应用中,以提高功率因数并减少三相电网中的电流谐波。 PFC转换器通常将大型电感器用作噪声滤波器,以抑制向电网的噪声发射。但是,与许多其他功率转换器一样,强烈要求PFC转换器通过减小电感器的尺寸来实现高功率密度。本文的目的是提出一种使电感器小型化的磁性结构。拟议的磁性结构由一个集成的磁性元件和一个三相共模扼流圈组成。通过集成电感器,所提出的磁性结构可以使磁芯体积最小化,同时保持饱和电流水平和噪声滤波能力不变。进行实验以评估所提出的磁性结构的适当性以及可能的体积减小。结果,在所提出的磁性结构中发现了32.2%的体积减小,而没有滤波能力的下降。

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