论文标题
闪电映射:技术,挑战和机遇
Lightning Mapping: Techniques, Challenges, and Opportunities
论文作者
论文摘要
尽管在研究雷电现象方面取得了重大进展,但精确的位置及其发生的映射仍然是一个挑战。可以通过研究伴随闪电放电的电磁辐射来确定闪电映射。它可以为保护生命和宝贵资产所做的努力做出重大贡献。有三种用于定位闪电的主要方法,它们是磁方向发现器(MDF),到达时间(TOA)和干涉仪(ITF)。对这些方法的详尽研究为研究人员提供了一个指南,以更好地理解和进步。本文审查了用于在这三种方法中找到和绘制闪电的现有方法。我们研究实施的技术,分析其优点和缺点,并以有助于提取机会进一步改进的方式进行分类。我们得出的结论是,为了更好地确定闪电的位置和图,改善闪电信号的处理并用它过滤相关的噪声是必不可少的。这包括引入新的处理方法,例如小波转换,而不是传统的互相关。人工智能的使用也可能为确定闪电的类型做出很大的贡献,尤其是深度学习,这可以更好地映射闪电及其发生。我们还可以得出结论,与可以找到雷击点的MDF和TOA不同,ITF可以产生闪电放电的传播图像,可以揭示出闪电的机理。最后,本文是研究人员的参考,专注于闪电映射,使他们深入了解该领域。
Despite the significant progress made in studying the lightning phenomenon, precise location and mapping of its occurrence remain a challenge. Lightning mapping can be determined by studying the electromagnetic radiation accompanying the lightning discharges. It can contribute substantially to efforts made to protect lives and valuable assets. There are three main methods used to locate lightning, which are Magnetic Direction Finder (MDF), Time of Arrival (TOA), and Interferometer (ITF). A thorough study of these methods provides researchers with a guide to better understand and progress in this field. This paper reviews existing approaches used to locate and map lightning within these three methods. We study the implemented techniques, analyze their merits and demerits, and sort them in a way that facilitates extracting opportunities for further improvements. We conclude that for better development in determining the location and map of lightning, improving the processing of lightning signals and filtering the associated noise with it is essential. This includes introducing new processing methods such as wavelet transformation instead of the traditional cross-correlation. The use of artificial intelligence may also contribute a lot, particularly deep learning, to determining the type of lightning, which enables better mapping for the lightning and its occurrence. We also could conclude that unlike MDF and TOA, which can locate the lightning strike points, ITF can produce lightning discharge propagation images that can unveil the mechanism of lightning discharges. Finally, this paper serves as a reference for researchers focusing on lightning mapping to give them insight into the field.