集成变压器交错反激变换器无源元件分析与设计

Masataka Ishihara, S. Kimura, W. Martínez, Masayoshi Yamamoto
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引用次数: 5

摘要

反激式开关电源已广泛应用于DC/DC变换器、太阳能微型逆变器和LED驱动器等低功耗应用中。然而,反激变换器有几个与输出电容的体积以及高输出电压噪声有关的问题;这是由不连续的输出电流产生的。因此,与单相反激变换器相比,二次侧并联的交错操作可以减小输出电流纹波。然而,除了输出电容,交错操作是不适合变压器,如果希望获得轻重量和紧凑的性能。为了解决这一问题,提出了集成变压器的交错反激变换器,以实现输出电容和变压器的小型化。所提出的带集成变压器的反激变换器主要有两种类型:并联型和串联型。这两种类型根据主端上的连接进行分类。然而,还没有对体积和功率损失进行定量比较分析。此外,集成变压器的设计方法也没有明确。因此,本文对集成变压器和输入电容的定量体积和功率损耗进行了分析,以期为实现高功率密度的交错反激变换器的设计提供指导。最后给出了一些实验结果,验证了该设计方法对综合变压器的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and design of passive components for interleaved flyback converter with integrated transformer
Flyback switch mode power supplies have been widely used in low-power applications, such as DC/DC converters, solar micro-inverters and LED drivers. However, flyback converters have several problems related to the volume of the output capacitor as well as high output voltage noise; this is produced by the discontinuous output current. Consequently, interleaved operation with parallel connection on the secondary side can reduce the output current ripple compared with the single-phase flyback converter. Nevertheless, besides the output capacitor, the interleaved operation is unsuitable for transformers if it is desired to obtain light weight and compact performance. To address this problem, the interleaved flyback converter with integrated transformer has been proposed for achieving miniaturization of the output capacitor and transformers. There are mainly two types of the proposed flyback converter with integrated transformer: Parallel and Series types. These two types are categorized based on the connection on the primary side. Nevertheless, quantitative comparison of the volume and power loss has not been analyzed yet. Moreover, the design method of the integrated transformer also has not been conducted with clarity. Hence, in this paper, in order to provide a guide for the design of an interleaved flyback converter for achieving high power density, we analyze the quantitative volume and power losses of the integrated transformer and the input capacitor. Finally, this paper shows some experimental results that validate the appropriateness of the design method for the integrated transformer.
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