电弧信息模型

Alekseevskiy Dmytro G., Andriienko Petro D., Kiselov Yehor N., Korotych Hryhorii I., Shmalii Serhii L.
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引用次数: 0

摘要

数学模型的综合是信息技术不可分割的一部分。它允许对各种系统和过程进行分析、预测和优化。这个过程的一个关键组成部分是选择正确的数学方法和验证模型的充分性。建议的文章是可视化块建模方法开发的一个组成部分,特别是增强了它的库。随着库的发展,可视化块建模方法的应用范围也在不断扩大。该作品的材料使用视觉建模工具来构建和使用电弧的数学模型。与充分描述电弧中的电物理过程的已知电弧模型相比,所提出的数学模型具有显着更高的效率。这可以减少复杂电气技术系统的建模时间,包括电弧形成和重燃过程。所提出的模型包括两个过程的描述:电动力学和热力学。辞职电压和电流自动计算。通过与实验数据的比较,验证了所提模型的充分性。此外,通过分析电源电压在不同频率下的动态伏安特性,证实了所提模型的充分性。开发的数学模型被格式化为可视化块建模库的一个元素。这允许直接使用所提出的模型来综合复杂的电子技术系统模型,包括电弧,从而扩展了应用视觉块建模方法的边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An electric arc information model
The synthesis of mathematical models is an inalienablepart of information technology. It allows for the analysis, prediction, and optimization of various systems and processes. A crucial component of this process is the selection of the correct mathematical approach and the validation of the model's adequacy. The proposed article is a component of the development of the visual-block modelingmethod, particularly forenhancing its library. As the library grows, the boundaries of applying the visual-block modelingmethod are expanded. The work's materials address the construction and use of a mathematical model of an electric arc using visual modeling tools. The proposed mathematical model has significantly higher efficiency compared to known models of the electric arc that adequately describesthe electro-physical process in the electric arc. This allows for a reduction in modeling time for complex electro-technical systems, which include the processes of arc formation and reigniting. The presented model encompasses the description of two processes: electrodynamicsand thermodynamicones. The voltage and current for resignationsare calculated automatically. The adequacy of the proposed model has been verified by comparing it with experimental data. Additionally, theadequacy of the proposed model is confirmed through the analysis of dynamic volt-ampere characteristics for various frequencies of the power source voltage. The developed mathematical model is formatted as an element of the visual-block modelinglibrary. This allows for the direct use of the proposed model for synthesizing models of complex electro-technicalsystems, including the electric arc, thus expanding the boundaries of applying the visual-block modelingmethod.
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