AUTO-APPRAISAL OF VOLTAGE RATING FOR SWITCHED-CAPACITOR DC-DC CONVERTERS

H. Taghizadeh, A. Cross, N. Narayanan-Kuruveettil
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引用次数: 1

Abstract

Resonant Switched Capacitor (SC) DC-DC converters are showing potential for use in medium to high-power applications. The high-cell count in these applications means that for a given voltage conversion ratio there are theoretically a large number of alternative topologies that can be synthesised. However, each of these topologies may exhibit different competing characteristics, for example total VA rating of capacitors, total VA rating of switches, number of switches and individual switch voltage rating. Obtaining an optimum topology in terms of given design constraints is therefore important requirement. This paper builds on previous work by the authors by presenting a method for the automatic calculation of the voltage ratings of the components in a SC converter. This result along with earlier work, allows for the calculation of VA ratings, which are an important metric when comparing competing circuits. In addition, a new Canonical Cell topology is presented that extends the range of SC circuits that can be analysed using this method, to cover so-called Ladder circuits. The method is validated against detailed Spice simulations and measurements from a hardware prototype.
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开关电容dc-dc变换器额定电压的自动评估
谐振开关电容(SC) DC-DC变换器显示出在中大功率应用中的潜力。在这些应用中,高电池数意味着对于给定的电压转换比,理论上可以合成大量的替代拓扑结构。然而,这些拓扑中的每一种都可能表现出不同的竞争特性,例如电容器的总伏安额定值、开关的总伏安额定值、开关的数量和单个开关的电压额定值。因此,在给定的设计约束条件下获得最优拓扑是重要的要求。本文建立在作者以前的工作上,提出了一种自动计算SC变换器中元件额定电压的方法。这一结果与早期的工作一起,允许计算伏安额定值,这是比较竞争电路时的一个重要指标。此外,提出了一种新的规范细胞拓扑结构,扩展了可以使用这种方法分析的SC电路的范围,以覆盖所谓的阶梯电路。该方法通过Spice的详细模拟和硬件样机的测量进行了验证。
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