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On the efficient simulation of electrical circuits with constant phase elements: The Warburg element as a test case

机译:关于具有恒定相位元素的电路的高效仿真:以Warburg元素作为测试案例

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摘要

The constant phase Element (CPE) concept naturally emerges as a model for describing a range of electrical phenomena where ionic diffusion is involved. We suggest a new method for modelling the transient behavior of electrical circuits that contain CPE elements. Without loss of generality, we study the Warburg element to demonstrate the method, but the method can be easily extended to any CPE. Transient simulations of such elements require the numerical evaluation of a computationally expensive convolution integral that links the voltage drop across the element, with the current that passed through it. In our work we suggest a new method for reducing the computational cost of the numerical evaluation of the convolution integral. We show that the computational cost can be reduced by one order of magnitude.
机译:恒定相元素(CPE)概念自然而然地成为一种模型,用于描述涉及离子扩散的一系列电现象。我们建议一种用于对包含CPE元素的电路的瞬态行为进行建模的新方法。在不失一般性的前提下,我们研究了Warburg元素以证明该方法,但是该方法可以轻松地扩展到任何CPE。这种元件的瞬态仿真需要对计算量大的卷积积分进行数值评估,该积分将通过元件的电压降与流过该元件的电流联系起来。在我们的工作中,我们提出了一种减少卷积积分数值计算的计算成本的新方法。我们表明,计算成本可以降低一个数量级。

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