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首页> 外文期刊>Power Electronics, IEEE Transactions on >An Integrated AC Choke Design for Common-Mode Current Suppression in Neutral-Connected Power Converter Systems
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An Integrated AC Choke Design for Common-Mode Current Suppression in Neutral-Connected Power Converter Systems

机译:用于中性点连接电源转换器系统中共模电流抑制的集成交流扼流圈设计

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摘要

This paper presents an integrated ac choke that incorporates the common-mode (CM) suppression function into a three-phase differential-mode (DM) inductor. The proposed choke, together with other filter components, provides a transformerless solution to issues caused by the switching CM voltage in neutral-connected power converter systems. The required high CM-to-DM inductance ratio is generated by different magnetic paths in the novel structure. An approach based on magnetic circuit calculation can be applied to the weight-minimized design in which a reasonably small core loss confirms the choke''s heat dissipation capability. The existence and uniqueness of the optimization are proven by a design example and analysis. Comparison to separate DM and CM inductors demonstrates the benefits of integration: the iron and copper material savings, the volume and weight reduction, and overall system efficiency improvement. The finite element method is used to tune the design parameters with which a prototype is implemented. The simulation and experimental results of the prototype in a voltage source converter verify the feasibility and effectiveness of the integrated choke.
机译:本文提出了一种集成的交流扼流圈,该扼流圈将共模(CM)抑制功能整合到了三相差分模式(DM)电感器中。拟议中的扼流圈与其他滤波器组件一起,为中性线连接的电源转换器系统中由开关CM电压引起的问题提供了一种无变压器解决方案。新型结构中不同的磁路会产生所需的高CM / DM电感比。可以将基于磁路计算的方法应用于重量最小的设计,在该设计中,合理的铁心损耗可以确定扼流圈的散热能力。通过设计实例和分析证明了优化的存在性和唯一性。与单独的DM和CM电感器进行比较,证明了集成的好处:节省了铁和铜材料,减少了体积和重量,并提高了整体系统效率。有限元方法用于调整用于实现原型的设计参数。电压源转换器中原型的仿真和实验结果证明了集成扼流圈的可行性和有效性。

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