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Time-Domain Modeling and Analysis of Switched-Capacitor Converters

机译:交换电容转换器的时域建模与分析

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摘要

This article proposes time-domain modeling and analysis of switched-capacitor converters (SCCs) by homogenizing the state-space model, resulting in a closed-form expression of the output voltage as a function of time without requiring discretization and subsequent numerical solution. The proposed technique facilitates obtaining the steady-state output voltage at any arbitrary time within a period, rather than at one discrete time at the beginning or end of the clock period. Circuit-level simulations for various SCC topologies, viz., series-parallel (SP), ladder (LD), Fibonacci (FB), and Dickson (DK), show excellent agreement of the time-domain behavior as well as the equivalent resistance of the converter with the proposed technique. The proposed technique gives more than an order-of-magnitude improvement in simulation time. Experimental data for SP and LD topologies have been used to validate the accuracy of the proposed technique.
机译:本文通过使状态空间模型均匀化,提出了时域建模和分析开关电容转换器(SCC),导致输出电压的闭合形式表达式,作为时间的函数,而不需要离散化和随后的数字解决方案。所提出的技术有助于在周期内的任何任意时间内获得稳态输出电压,而不是在时钟周期的开始或结尾处的一个离散时间。各种SCC拓扑的电路级模拟,VIZ,串行平行(SP),梯形图(LD),FIBONACCI(FB)和Dickson(DK),表现出时域行为的良好协议以及等效电阻具有所提出的技术的转换器的研究。所提出的技术在模拟时间内提供了多个数量级改善。用于SP和LD拓扑的实验数据已被用于验证所提出的技术的准确性。

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