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Integrated common-mode inductor design for parallel interleaved converters

机译:并行交错转换器的集成共模电感器设计

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Paralleling power converters can increase the power rating and reliability of the overall system. Interleaving the carrier in parallel converters helps in reduction of output current distortion, and in reduction of electromagnetic interference noise. This study presents a common-mode inductor design for parallel interleaved converters, which integrates the inter-phase and boost inductors together in a novel structure. It is shown that the proposed magnetic structure accommodates a wider range of desirable electromagnetic parameters. Step-by-step design procedure of the proposed integrated common-mode inductor (ICMI) is presented. The proposed ICMI design results in fewer components, reduces the size and the cost of overall system. The proposed ICMI is compared with a design available in literature using an example. Existing design procedure imposes constraints on the core geometry that are not suitable for high-power designs. The proposed design makes use of standard C cores that improves manufacturability. Experimental results from a 7.5 kVA parallel single-phase power converter show the effectiveness of the proposed ICMI.
机译:并联电源转换器可以提高整个系统的额定功率和可靠性。将载波交织到并行转换器中有助于减少输出电流失真,并减少电磁干扰噪声。这项研究提出了一种用于并行交错式转换器的共模电感器设计,该设计将相间和升压电感器集成到一个新颖的结构中。结果表明,所提出的磁性结构可容纳更宽范围的理想电磁参数。介绍了所提出的集成共模电感器(ICMI)的分步设计过程。拟议的ICMI设计可减少组件数量,减小整个系统的尺寸并降低其成本。使用一个示例将建议的ICMI与文献中提供的设计进行比较。现有的设计程序对铁芯的几何形状施加了不适合大功率设计的约束。提议的设计使用了可提高可制造性的标准C核。 7.5 kVA并联单相功率转换器的实验结果表明了所提出的ICMI的有效性。

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