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Optimal Design of Complex Switched-Capacitor Converters Via Energy-Flow-Path Analysis

机译:基于能流路径分析的复杂开关电容变换器优化设计

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Many analytical methods of establishing accurate models of the switched-capacitor (SC) converters have been developed. These methods are applicable to simple low-order SC converters and can permit only a general efficiency calculation of SC converters. They do not provide analytical solutions that describe how individual electrical component in the circuit practically affects the SC converter at different frequencies. Such an analysis is important for the optimal design and realization of a complex (high-order) SC converter. This is particularly true for those SC converters which have more than two operating states. For complex SC converters, a constituent capacitor may have a profound effect on the converter's efficiency and is dependent on the configuration of the switches and the arrangement of the energy flow paths. In this paper, the relationship of the value of capacitors and the efficiency of complex SC converters is derived and investigated using an energy-flow-path analysis. Optimal design of SC converters can be achieved through a systematic component value selection by: 1) increasing the proportion of energy flow through the most efficient paths; and 2) increasing the efficiency of the paths that have a higher energy flow. The design of complex SC converters in terms of optimizing their power efficiency is discussed using an exponential SC converter as an illustration. The results of both calculation and experimental measurement show that the approach is effective.
机译:已经建立了许多建立开关电容器(SC)转换器精确模型的分析方法。这些方法适用于简单的低阶SC转换器,并且只能允许对SC转换器进行常规效率计算。他们没有提供分析解决方案来描述电路中的单个电气元件在不同频率下实际上如何影响SC转换器。这种分析对于复杂(高阶)SC转换器的优化设计和实现非常重要。对于具有两个以上工作状态的SC转换器尤其如此。对于复杂的SC转换器,组成电容器可能会对转换器的效率产生深远影响,并且取决于开关的配置和能量流路径的布置。在本文中,利用能量流路径分析推导并研究了电容器的值与复杂SC转换器效率之间的关系。 SC转换器的优化设计可以通过系统地选择组件值来实现:1)增加通过最有效路径的能量流比例; 2)提高能量流较高的路径的效率。以指数SC转换器为例,讨论了优化SC转换器的电源效率方面的设计。计算和实验测量结果均表明该方法是有效的。

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