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Lightning return-stroke transmission line modelling based on the derivative of Heidler function and CN Tower data.

机译:基于海德勒函数和加拿大国家电视塔数据导数的雷电回程输电线路建模。

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摘要

One of the most important parameters in a lightning flash that is of interest to researchers is the lightning return-stroke current as it causes most of the destructions and disturbances in electrical and telecommunication networks. In most cases, the lightning return-stroke current can not be directly measured and current characteristics are determined from measured electric and magnetic fields through the use of lightning return-stroke models. The main objective of this work is the development of a lightning return-stroke model for an elevated object. Also, an important objective is the correlation of the wavefront parameters (peak, maximum rate of rise and risetime) of the return-stroke current with the wavefront parameters of its associated lightning electromagnetic pulse (LEMP), measured 2 km north of the tower. The developed field-current parameter relationships for CN Tower lightning return strokes are compared with those obtained from measurements conducted at the Peissenberg Tower in Germany.;For the quantitative assessment of the proposed model, a comparison between the simulated field, obtained through the usage of Maxwell's equations and the simulated current, and the measured field is performed. The developed 3-section TL model based on the measured current derivative and the derivative of the modified Heidler function produced a simulated magnetic field that is much closer to the measured field in comparison with previous models.;The developed field-current parameter relationships as well as the experimentally verified lightning return-stroke model can contribute to solving the inverse-source problem, one of the most challenging problems in lightning research, where the lightning current characteristics are estimated based on the characteristics of the measured LEMP. Keywords: Tall-structure lightning, lightning return-stroke models, Heidler function, lightning electromagnetic pulse (LEMP), lightning detection.;A 3-section transmission line (TL) model of the CN Tower, along with the derivative of the modified Heidler function, is used to simulate the measured current derivative signal. Then, the spatial-temporal distribution of the lightning current along the CN Tower and the lightning channel, during the lightning return-stroke phase, is determined. The presented model simulates the measured current derivative signal instead of the current as has been used by other researchers. The use of the derivative of the modified Heidler function to simulate the lightning current derivative proved to be superior than simulating the lightning current.
机译:研究人员感兴趣的雷电中最重要的参数之一是雷电回程电流,因为它会导致电气和电信网络的大部分破坏和干扰。在大多数情况下,不能直接测量雷击电流,而通过使用雷击模型可以从测得的电场和磁场中确定电流特性。这项工作的主要目的是为高架物体开发雷电回击模型。同样,一个重要的目标是回程电流的波阵面参数(峰值,最大上升率和上升时间)与其相关的雷电电磁脉冲(LEMP)的波阵面参数之间的相关性,在塔楼以北2公里处测量。将开发的CN塔雷击回程的场-电流参数关系与在德国Peissenberg塔进行的测量获得的场-电流参数关系进行比较;;对于拟议模型的定量评估,通过使用进行麦克斯韦方程和模拟电流以及被测场的计算。基于测得的电流导数和修正的海德勒函数的导数开发的三段式TL模型产生的模拟磁场与以前的模型相比,更接近于测得的磁场。由于经过实验验证的雷电回程模型可以帮助解决反源问题,这是雷电研究中最具挑战性的问题之一,其中雷电电流特性是根据测得的LEMP的特性估算的。关键词:高层结构雷电,雷击回程模型,海德勒函数,雷电电磁脉冲(LEMP),雷电检测;加拿大国家电视塔的3段传输线(TL)模型,以及改进型海德勒的派生函数,用于模拟测得的电流导数信号。然后,确定在雷击返回阶段沿CN塔和雷电通道的雷电流的时空分布。提出的模型模拟了测得的电流导数信号,而不是其他研究人员所使用的电流。事实证明,使用修改的Heidler函数的导数来模拟雷电流导数要优于模拟雷电流。

著录项

  • 作者

    Milewski, Mariusz.;

  • 作者单位

    Ryerson University (Canada).;

  • 授予单位 Ryerson University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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