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An alternative approach to solve complex nonlinear least-squares problems

机译:解决复杂的非线性最小二乘问题的另一种方法

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摘要

In this work, a hybrid electrochemical impedance spectroscopy (EIS) strategy was developed with the aim to solve complex nonlinear least-square (CNLS) problems. For the first time the CLNS problems were solved by an alternative approach, i.e. by using Python to merge the following tactics: circuit description code (CDC), central-difference formula, Nielsen's modification of the Levenberg-Marquardt algorithm (LMA) and visual inspection of the chi(2)-function minima. It was presented that the Nielsen's damping (lambda) factor updating strategy can be used to design a topical fitting engine in which the change in the lambda factor is continuous. The commonly used forward-difference formula was replaced with a more accurate central-difference formula to approximate the first derivates. It was elucidated that by combining the Nielsen's lambda updating tactics and central-difference formula in the hybrid EIS strategy resulted in the design of a more robust fitting engine. The hybrid EIS strategy was enhanced by the CDC routine which allows researchers to effortlessly generate a great variety of electrical equivalent circuits (EECs). The credibility of the EEC parameters was increased by visual inspection of the chi(2)-function minima. Additionally, a novel convergence in the symmetry criterion was proposed to avoid errors during the visual inspection. The applicability of the hybrid EIS strategy was evaluated after it was integrated into a new software solution and compared to the more widely used MEISP and EQUIVCRT software packages. It was presented that the three fundamentally different software solutions yielded approximately equal EEC data. However, only EIS strategies with the similar LMA tactics produced the identical chi(2)-values in all case studies. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,开发了一种混合电化学阻抗谱(EIS)策略,旨在解决复杂的非线性最小二乘(CNLS)问题。首次通过替代方法解决了CLNS问题,即使用Python合并以下策略:电路描述代码(CDC),中心差公式,尼尔森对Levenberg-Marquardt算法(LMA)的修改和目测chi(2)函数极小值。有人提出,尼尔森的阻尼(拉姆达)因子更新策略可用于设计局部拟合引擎,其中拉姆达因子的变化是连续的。常用的前向差分公式已替换为更精确的中心差分公式,以近似一阶导数。阐明了通过在混合EIS策略中结合尼尔森的lambda更新策略和中心差公式,可以设计出更强大的拟合引擎。 CDC例程增强了混合EIS策略,使研究人员可以毫不费力地生成各种各样的电子等效电路(EEC)。通过对chi(2)函数最小值的视觉检查,提高了EEC参数的可信度。另外,提出了对称性准则中的新颖收敛以避免视觉检查期间的错误。在将混合EIS策略集成到新的软件解决方案中之后,对它的适用性进行了评估,并与更广泛使用的MEISP和EQUIVCRT软件包进行了比较。结果表明,三种根本不同的软件解决方案产生的EEC数据大致相等。但是,在所有案例研究中,只有具有类似LMA策略的EIS策略才能产生相同的chi(2)值。 (C)2015 Elsevier B.V.保留所有权利。

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