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Coupled-Inductor Filter: A Basic Filter Building Block

机译:耦合电感滤波器:基本滤波器构建块

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Coupled-magnetics and coupled-inductor filters provide smoothing in a power converter by steering ripple current away from the “quite port.” While this concept is not new, topologies claiming to be “new” or “novel” continue to be reported in the literature, suggesting that the ripple-steering phenomenon may not be well understood to be a property of the filter block itself. This paper describes a general coupled-inductor filter block and presents a brief history of its application starting with the earliest known version of the circuit, which dates back to a 1923 patent application. The coupled-inductor circuit model is reviewed, starting with the basic topology and ideal circuit elements. Real circuit elements are then considered along with the effects of equivalent series resistance and other parasitic elements. A circuit-based filtering approach is used to emphasize the filtering aspect of the coupled inductor. It will be seen that the coupled-inductor filter can exhibit a low pass with notch frequency response. This provides the ability to achieve extra attenuation at a particular frequency, such as the converter switching frequency, which can reduce the overall filtering burden without adding extra inductive components. When the filter components are treated as a functional circuit group, instead of an interconnection of inductors and capacitors, the coupled-inductor filter can be analyzed as a drop-in replacement wherever a smoothing choke would normally be used and does not depend on converter voltage waveforms. A topology transformation of the Ćuk converter shows that “zero ripple” in not a special property of the topology, but can be achieved using the coupled-inductor filter block.
机译:磁耦合滤波器和电感耦合滤波器通过使纹波电流远离“相当大的端口”,从而在功率转换器中提供了平滑功能。尽管这个概念不是新概念,但自称是“新”或“新颖”的拓扑结构仍在文献中得到报道,这表明可能无法很好地理解脉动转向现象是滤波器模块本身的一种特性。本文介绍了一种通用的耦合电感滤波器块,并简要介绍了其应用历史,该电路的历史最早可追溯至1923年的专利申请。从基本拓扑和理想电路元件开始,回顾了耦合电感器电路模型。然后考虑实际电路元件以及等效串联电阻和其他寄生元件的影响。基于电路的滤波方法用于强调耦合电感器的滤波方面。可以看出,耦合电感滤波器可以表现出具有陷波频率响应的低通。这提供了在特定频率(例如转换器开关频率)上实现额外衰减的能力,从而可以在不增加额外电感成分的情况下减轻总体滤波负担。如果将滤波器组件视为功能电路组,而不是将电感器和电容器互连,则可以在通常使用平滑扼流圈且不依赖于转换器电压的任何地方,将耦合电感滤波器分析为直接插入式替换。波形。 Ćuk转换器的拓扑转换表明,“零纹波”并不是拓扑的特殊属性,而是可以使用耦合电感滤波器模块实现的。

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