Analysis of a boost converter with tapped inductor and reduced voltage stress across the buffer capacitor

J.P. Fohringer, F. Himmelstoss
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引用次数: 22

Abstract

A step-up converter with tapped inductor is analyzed. Compared to the classical boost converter, the structure has been slightly modified which offers the advantage of reduced voltage stress across the buffer capacitor and due to a transformer the voltage transformation rate is changed. The classical and most common converter uses a simple inductor, leading to the disadvantage of extreme duty ratios when high voltage transfer ratios are needed. To meet such requirements, a tapped inductor (autotransformer) can be used instead of the ordinary inductor thus avoiding excessive duty ratios. After basic analyses in the continuous inductor current mode, important data for the dimensioning of the components, like the voltage and the current stress, and the equations for the component values are given. Moreover, a state space model and linearized transfer functions for the control of the converter are derived. When transformed into a bidirectional converter, it can be used for coupling two voltage links and as a two quadrant chopper for DC motors. To verify the proper function of this modified boost topology, a small test converter has been designed. Measurement results and a more precise model are given in the appendix.
带抽头电感和降低缓冲电容电压应力的升压变换器的分析
分析了一种带抽头电感的升压变换器。与经典升压变换器相比,该结构进行了轻微修改,从而降低了缓冲电容器的电压应力,并且由于变压器改变了电压转换速率。经典和最常见的转换器使用一个简单的电感,当需要高电压传输比时,导致极端占空比的缺点。为了满足这些要求,可以使用抽头电感(自耦变压器)代替普通电感,从而避免过高的占空比。通过对连续电感电流模式的基本分析,给出了元件尺寸的重要数据,如电压和电流应力,以及元件值的计算公式。此外,还推导了变换器控制的状态空间模型和线性化传递函数。当转换成双向变换器时,它可以用于耦合两个电压链路,也可以作为直流电机的两象限斩波器。为了验证这种改进的升压拓扑的正确功能,设计了一个小型测试转换器。测量结果和更精确的模型在附录中给出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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