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Design and analysis of a switched-capacitor-based step-up DC/DC converter with continuous input current

机译:具有连续输入电流的基于开关电容器的升压DC / DC转换器的设计和分析

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This paper presents the use of the current control scheme in switched-capacitor (SC)-based step-up dc/dc converter. It not only includes all positive characteristics of previous SC converters, including small size, light weight, high power density, and the amenability to IC hybridization, but also has the prominent features of continuous input current waveform and better regulation capability than the traditional SC converters. The problem of conducted electromagnetic interference with the supply network, which generally exists in previous SC converters, is highly suppressed. The concept of energy transfer is achieved by using dual SC step-up converter cells operating in antiphase. Each cell is switching between two topologies for the same duration. The dc voltage conversion ratio is controlled by the current control scheme in order to adjust the charging profile of the capacitors. A generalized n-stage converter is presented and is analyzed by a simplified third-order state-space equation set. The static and dynamic behaviors and the design constraints of the converter are derived. A prototype of the 30 W 5 V/12 V two-stage converter has been built, giving an overall efficiency of 78% with power density of 15 W/in/sup 3/. Its stability of operation is also presented.
机译:本文介绍了电流控制方案在基于开关电容器(SC)的升压DC / DC转换器中的使用。它不仅包含了先前SC转换器的所有积极特性,包括体积小,重量轻,功率密度高,易于进行IC杂交,而且还具有连续输入电流波形的突出特点以及比传统SC转换器更好的调节能力。 。以前的SC转换器中普遍存在的对供电网络的电磁干扰问题得到了极大的抑制。能量转移的概念是通过使用反相工作的双SC升压转换器单元实现的。每个单元在两个拓扑之间切换相同的持续时间。直流电压转换比由电流控制方案控制,以调节电容器的充电曲线。提出了一个广义的n级转换器,并通过简化的三阶状态空间方程组进行了分析。推导了转换器的静态和动态行为以及设计约束。已经构建了30 W 5 V / 12 V两级转换器的原型,以15 W / in / sup 3 /的功率密度提供了78%的整体效率。还介绍了其操作的稳定性。

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