Switching Capacitor Assisted Buck-Boost Converter

M. Veerachary
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Abstract

A switching capacitor assisted buck-boost converter is presented in this paper. This converter is capable of yielding a high buck-boost voltage gain at smaller duty ratios with maximum duty ratio range is up to 0.5. To achieve this, switching capacitor concept is used. Here, the capacitor switching action and interconnection with the inductance is enabled by the H-bridge which is formulated by a pair of controllable switches and diodes. A low-pass filter capacitor is used on the load side to ensure ripple free constant dc-voltage. Firstly, principle of operation is discussed followed by steady-state analysis is established. State-space models are derived to formulate the investigate the proposed converter behavior under dynamic conditions and then to design suitable controller. For concept validation and verification, a 15/48 V, 15/30 W prototype is constructed which is supplied from an input voltage of 24 V. Simulation and experimental results are depicted to demonstrate the proposed converter salient features.
开关电容辅助降压-升压转换器
提出了一种开关电容辅助的降压-升压变换器。该变换器能够在较小的占空比下产生高降压增益,最大占空比范围可达0.5。为了实现这一点,使用了开关电容的概念。在这里,电容器的开关动作和与电感的互连是由一对可控开关和二极管组成的h桥实现的。负载侧采用低通滤波电容,确保无纹波直流电压恒定。首先讨论了其工作原理,然后进行了稳态分析。通过建立状态空间模型,研究了所提出的变换器在动态条件下的行为,进而设计了合适的控制器。为了概念验证和验证,构建了一个15/48 V, 15/30 W的原型,其输入电压为24 V。仿真和实验结果验证了该变换器的显著特性。
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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