基于生成式人工智能的电力系统过电压虚拟仿真实验

Virtual Simulation Experiment of Power System Overvoltage Based on Generative Artificial Intelligence

  • 摘要: 传统雷电过电压实验与电磁暂态仿真存在设备成本高昂、实验安全风险高、建模复杂等局限,导致电力系统过电压领域的实践教学相对薄弱。鉴于生成式人工智能(GAI)技术在产生代码方面的优势,本文探究GAI技术在电力系统过电压虚拟仿真实验的应用。通过生成超文本标记语言(HTML)代码,构建了一套完整的虚拟仿真实验体系,涵盖雷电发展过程、感应过电压模拟、雷击输电线路过电压计算、变电站侵入波过电压计算以及避雷器工作原理等内容。虚拟仿真实验可将行波传播、折反射等抽象理论知识可视化,使学生在交互操作中深刻理解知识点内涵,达到改善教学效果的目标,为GAI技术在电气工程专业虚拟仿真实验中的应用提供了有益参考和思路。

     

    Abstract: Traditional lightning overvoltage experiments and electromagnetic transient simulations are constrained by drawbacks such as high equipment costs, significant safety risks, and complex modeling procedures, leading to insufficient practical instruction in the field of power system overvoltage. Given the formidable capabilities of generative artificial intelligence (GAI) in code generation, this study explored the application of GAI technology in virtual simulation experiments for power system overvoltages. By generating hypertext markup language (HTML) code, a comprehensive virtual simulation experimental framework was established, covering the development process of lightning, induced overvoltage simulation, overvoltage calculation for lightning strikes on transmission lines, traveling wave overvoltage calculation in substations, and the operating principles of arresters. These virtual simulation experiments visualize abstract theoretical concepts such as traveling wave propagation, reflection, and refraction, enabling students to gain a deep understanding of the underlying principles through interactive operation, thereby enhancing teaching effectiveness. This study provides valuable references and insights for the application of GAI technology in virtual simulation experiments within the electrical engineering major.

     

/

返回文章
返回