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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Comparative Study of Riemann–Liouville and Caputo Derivative Definitions in Time-Domain Analysis of Fractional-Order Capacitor
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Comparative Study of Riemann–Liouville and Caputo Derivative Definitions in Time-Domain Analysis of Fractional-Order Capacitor

机译:Riemann-Liouville和Caputo衍生物定义在分数级电容器时域分析中的比较研究

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摘要

The fractional-order capacitor applied in power electronic converters, filters or other circuits has become a hot spot due to benefits, such as high-performance and flexibility. Two typical kinds of fractional-order derivative definitions, Riemann-Liouville (RL) or Caputo derivatives are popularly used to analyze the characteristics of fractional-order capacitor. However, it remains a fundamental challenge to find that when and which fractional-order derivative definition is more suitable in the time-domain analysis of fractional-order capacitor. In this brief, comparative investigations about the transient and steady analysis of a fractional-order capacitor adopting these two definitions are performed. It is determined that difference comes from description of dynamic process. In particular, the difference is especially obvious for the cases of step-up input. Based on the analysis, this brief proposed that RL derivative is a more accurate choice for modeling and analyzing fractional-order capacitor in time domain. Moreover, RL derivative is also more suitable for solving fractional-order circuits with fractional-order capacitor. The results from simulations and experiments verify the conclusion.
机译:由于益处,诸如高性能和灵活性,因此在电力电子转换器,滤波器或其他电路中应用的分数级电容器已成为热点。两个典型的分数阶衍生物定义,riemann-liouville(RL)或Caputo衍生物普遍用于分析分数级电容器的特性。然而,发现何时以及哪个分数阶衍生定义更适合于分数级电容器的时域分析时仍然是一个根本的挑战。在此简述中,对采用这两个定义的分数级电容器的瞬态和稳定分析进行比较调查。确定差异来自动态过程的描述。特别是,对于升压输入的情况,差异尤为明显。基于分析,本文提出了RL衍生物是一种更准确的选择和分析时域中分数级电容的选择。此外,R1衍生物也更适合于用分数级电容器求解分数级电路。仿真和实验的结果验证了结论。

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