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针对[公式:见原文]蛛网和扇形电阻网络的两种优化的新型电势公式及数值算法。

Two optimized novel potential formulas and numerical algorithms for [Formula: see text] cobweb and fan resistor networks.

作者信息

Zhao Wenjie, Zheng Yanpeng, Jiang Xiaoyu, Jiang Zhaolin

机构信息

School of Automation and Electrical Engineering, Linyi University, Linyi, 276000 China.

School of Information Science and Engineering, Linyi University, Linyi, 276000 China.

出版信息

Sci Rep. 2023 Jul 31;13(1):12417. doi: 10.1038/s41598-023-39478-8.

Abstract

The research of resistive network will become the basis of many fields. At present, many exact potential formulas of some complex resistor networks have been obtained. Computer numerical simulation is the trend of computing, but written calculation will limit the time and scale. In this paper, the potential formulas of a [Formula: see text] scale cobweb resistor network and fan resistor network are optimized. Chebyshev polynomial of the second class and the absolute value function are used to express the novel potential formulas of the resistor network, and described in detail the derivation process of the explicit formula. Considering the influence of parameters on the potential formulas, several idiosyncratic potential formulas are proposed, and the corresponding three-dimensional dynamic images are drawn. Two numerical algorithms of the computing potential are presented by using the mathematical model and DST-VI. Finally, the efficiency of calculating potential by different methods are compared. The advantages of new potential formulas and numerical algorithms by the calculation efficiency of the three methods are shown. The optimized potential formulas and the presented numerical algorithms provide a powerful tool for the field of science and engineering.

摘要

电阻网络的研究将成为许多领域的基础。目前,已经得到了一些复杂电阻网络的许多精确电势公式。计算机数值模拟是计算的趋势,但笔算会限制时间和规模。本文对一个[公式:见原文]尺度的蛛网电阻网络和扇形电阻网络的电势公式进行了优化。利用第二类切比雪夫多项式和绝对值函数来表示电阻网络的新电势公式,并详细描述了显式公式的推导过程。考虑参数对电势公式的影响,提出了几个特殊的电势公式,并绘制了相应的三维动态图像。利用数学模型和DST-VI给出了两种计算电势的数值算法。最后,比较了不同方法计算电势的效率。通过三种方法的计算效率展示了新电势公式和数值算法的优势。优化后的电势公式和提出的数值算法为科学和工程领域提供了一个强大的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/296e/10390589/706578f15a3c/41598_2023_39478_Fig1_HTML.jpg

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