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Permanent-Magnet Coupled Power Inductor for Multiphase DC–DC Power Converters

机译:用于多相DC-DC电源转换器的永磁耦合功率电感器

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Using a coupled power inductor (CPI) in a multiphase dc–dc power converter instead of using multiple single-phase power inductors (PIs) reduces the inductor size and achieves better steady state and transient performances. To further reduce the inductor size and weight used in multiphase power converters, this paper presents a two-phase CPI that utilizes a permanent magnet (PM) to achieve almost doubled saturation current with the same size or equivalently achieve significant size and weight reduction. Operation principle of the presented permanent magnet coupled power inductor (PMCI) and required PM dimensions are derived and used as a design guide. The three-dimensional physical model of the PMCI is developed by using ANSYS/Maxwell software package to “visualize” the saturation current doubling. The fabricated PMCI design, with specifications of 24 A/phase, ∼4.25 μH/phase equivalent steady-state inductance, and ∼2.3 μH equivalent transient inductance, is tested in a 4–8 V two-phase dc–dc boost power converter with up to 50 A input current. Results show that compared to a conventional CPI design with the same size, weight, and inductance, the fabricated PMCI almost doubles the saturation current (from 13 to 24 A/phase). Compared to another CPI with a larger size but with even a smaller saturation current (18 A/phase), the core volume of the PMCI is reduced to 51.9% and the core weight is reduced to 51.2%. In addition, the PMCI achieves ∼76.3% core size and ∼73.4% core weight reductions compared to two separate single-phase PIs with the same steady-state inductance and similar saturation current (∼22 A) due to the dual flux cancelation effect from the coupling and PM realized by the presented PMCI structure.
机译:在多相DC-DC电源转换器中使用耦合功率电感器(CPI)而不是使用多个单相功率电感器(PI)可以减小电感器的尺寸,并获得更好的稳态和瞬态性能。为了进一步减小多相功率转换器中使用的电感器的尺寸和重量,本文提出了一种两相CPI,它利用永磁体(PM)在相同尺寸的情况下实现了几乎两倍的饱和电流,或者等效地实现了尺寸和重量的显着降低。推导了所提出的永磁耦合功率电感器(PMCI)的工作原理和所需的PM尺寸,并将其用作设计指南。 PMCI的三维物理模型是通过使用ANSYS / Maxwell软件包来“可视化”饱和电流倍增而开发的。制成的PMCI设计具有24A /相,〜4.25μH/相的等效稳态电感和〜2.3μH的等效瞬态电感的规格,已在具有4-8 V两相dc-dc升压功率转换器的环境中进行了测试。高达50 A的输入电流。结果表明,与具有相同尺寸,重量和电感的传统CPI设计相比,所制造的PMCI几乎使饱和电流增加了一倍(从13 A到24 A /相)。与另一个具有较大尺寸但具有甚至更小的饱和电流(18 A /相)的CPI相比,PMCI的铁心体积减小到51.9%,铁心重量减小到51.2%。此外,与两个独立的单相PI相比,PMCI实现了约76.3%的磁芯尺寸减小和约73.4%的磁芯重量减小,这归因于双重磁通抵消效应,具有相同的稳态电感和相似的饱和电流(〜22 A)。由提出的PMCI结构实现的耦合和PM。

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