构建松弛时间分布函数的自适应多参数正则化方法。

IF 1.9 Q2 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS GEM-International Journal on Geomathematics Pub Date : 2020-01-01 Epub Date: 2019-11-30 DOI:10.1007/s13137-019-0138-2
Mark Žic, Sergiy Pereverzyev, Vanja Subotić, Sergei Pereverzyev
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引用次数: 0

摘要

弛豫时间分布函数(DFRT)的测定是一种能让我们更详细地了解系统过程的方法,而简单的电化学阻抗光谱(EIS)测量是无法观察到这些过程的。DFRT 将 EIS 数据映射到一个包含所考虑系统的时标特征的函数中。从嘈杂的 EIS 测量值中提取此类特征的过程可以用弗雷德霍尔姆第一类积分方程来描述,众所周知,该方程存在问题,只能用正则化技术来处理。此外,由于实际上只能获得有限数量的 EIS 数据,因此在应用需要与正则化相结合的拼位方法后,上述方程就会出现。在本研究中,我们将讨论如何实现 DFRT 问题的正则化配准法,从而使所有出现的量都能以表积分之和的形式进行符号计算。所提议的正则化配准被视为多参数正则化。本研究的另一个贡献是调整了之前提出的多参数选择策略,使其适用于 DFRT 问题。由此产生的策略基于所有计算正则化近似值的聚合,原则上可与其他方法协同用于解决 DFRT 问题。我们还报告了应用合成数据的实验结果,表明所提出的技术成功地再现了已知的精确 DFRT。我们的技术所获得的数据还与著名的 DFRT 软件(DRTtools)所获得的数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Adaptive multi-parameter regularization approach to construct the distribution function of relaxation times.

Determination of the distribution function of relaxation times (DFRT) is an approach that gives us more detailed insight into system processes, which are not observable by simple electrochemical impedance spectroscopy (EIS) measurements. DFRT maps EIS data into a function containing the timescale characteristics of the system under consideration. The extraction of such characteristics from noisy EIS measurements can be described by Fredholm integral equation of the first kind that is known to be ill-posed and can be treated only with regularization techniques. Moreover, since only a finite number of EIS data may actually be obtained, the above-mentioned equation appears as after application of a collocation method that needs to be combined with the regularization. In the present study, we discuss how a regularized collocation of DFRT problem can be implemented such that all appearing quantities allow symbolic computations as sums of table integrals. The proposed implementation of the regularized collocation is treated as a multi-parameter regularization. Another contribution of the present work is the adjustment of the previously proposed multiple parameter choice strategy to the context of DFRT problem. The resulting strategy is based on the aggregation of all computed regularized approximants, and can be in principle used in synergy with other methods for solving DFRT problem. We also report the results from the experiments that apply the synthetic data showing that the proposed technique successfully reproduced known exact DFRT. The data obtained by our techniques is also compared to data obtained by well-known DFRT software (DRTtools).

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来源期刊
GEM-International Journal on Geomathematics
GEM-International Journal on Geomathematics MATHEMATICS, INTERDISCIPLINARY APPLICATIONS-
CiteScore
3.50
自引率
0.00%
发文量
18
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