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A novel integrated AC choke for common-mode voltage suppression in power converter systems

机译:用于电源转换器系统中共模电压抑制的新型集成式交流电抗器

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This paper presents a novel three-phase choke that integrates the common-mode (CM) suppression and differential-mode (DM) filtering functions. The proposed choke provides a transformerless solution to issues caused by the switching common-mode voltage (CMV) in power converter systems. The magnetic core involves three bridge legs and a peripheral part on which one set (three-phase) of coils are wound. While the induced CM flux flows in the circumference; the DM flux fills in both the external core and bridge legs through the air gaps. A high CM-to-DM inductance ratio is generated by the mechanical assembly. Despite novelty of the structure, a traditional design method based on magnetic circuit calculation is applicable to the integrated choke, in which not only is the size/weight minimized, but a reasonably small core loss is also achieved. Comparison to separate DM and CM reactors demonstrates the benefits of integration in iron and copper material saving, volume and weight reduction and efficiency improvement. The finite element analysis (FEA) simulation and test results of the prototype are finally supplied to verify the feasibility and effectiveness of the integrated choke.
机译:本文提出了一种新颖的三相扼流圈,该扼流圈集成了共模(CM)抑制和差模(DM)滤波功能。拟议的扼流圈为电源转换器系统中的开关共模电压(CMV)所引起的问题提供了一种无变压器的解决方案。磁芯包括三个桥臂和一个外围部分,在该外围部分上缠绕了一组(三相)线圈。当感应的CM通量在圆周上流动时; DM磁通通过气隙填充到外部磁芯和桥臂中。机械组件会产生较高的CM / DM电感比。尽管结构新颖,但是基于磁路计算的传统设计方法仍可应用于集成扼流圈,该方法不仅使尺寸/重量最小,而且还实现了相当小的铁损。与单独的DM和CM反应器进行比较,证明了集成在节省铁和铜材料,减少体积和重量以及提高效率方面的优势。最后提供了原型的有限元分析(FEA)仿真和测试结果,以验证集成扼流圈的可行性和有效性。

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