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Design of Zero-Ripple-Current Coupled Inductors With PWM Signals in Continuous Conduction Mode

机译:连续传导模式下PWM信号设计零波纹电流耦合电感器

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摘要

Coupled inductors are widely used in multiple outputs and interleaved dc–dc converters. Also filters often use coupled inductors as their inductive part. A generalized design procedure is proposed in this article focused on current ripple minimization and applicable to coupled inductors exposed to pulsewidth modulation signals and in continuous conduction mode. The design provides a very large inductance for all windings but one. Compared to other designs, it adapts to the existing magnetic properties of the magnetic device changing only the inductance ratio, simplifying the design and manufacturing process. It is based on the equivalent inductance value and its divergences. The only assumption applied is that the coupling coefficient among all windings is the same, which is an acceptable approximation in many magnetic core architectures. The theoretical results are experimentally verified. Not only almost zero ripple current is achieved, but also mass and volume is reduced compared to noncoupled inductors. This is an additional advantage of coupled inductors in mass and volume critical applications such as aerospace.
机译:耦合电感器广泛用于多个输出和交错的DC-DC转换器。过滤器通常会使用耦合电感作为其感应部件。在本文中提出了一种广义设计程序,其专注于电流纹波最小化,并且适用于暴露于脉冲宽度调制信号和连续导通模式的耦合电感器。该设计为所有绕组提供了非常大的电感,而是一个非常大的电感。与其他设计相比,它适应磁性装置的现有磁性,仅改变电感比,简化了设计和制造过程。它基于等同的电感值及其分歧。所应用的唯一假设是所有绕组中的耦合系数是相同的,这是许多磁芯架构中可接受的近似。理论结果是通过实验验证的。不仅实现了几乎零纹波电流,而且与非耦合电感器相比还减少了质量和体积。这是耦合电感器的额外优点和诸如航空航天的体积关键应用中的电感。

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