2000
DOI: 10.1109/15.831703
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EM fields generated by lightning channels with arbitrary location and slope

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Cited by 30 publications
(28 citation statements)
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“…Their paper presented results which confirm that channel inclination considerably affects the electromagnetic fields at close distances. Lupo et al [7], in their analysis, treated each tortuous path as a single line radiator with an arbitrary slope and height. They were able to develop closed-form solutions for the electromagnetic fields by omitting any mathematical approximations.…”
Section: Literary Backgroundmentioning
confidence: 99%
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“…Their paper presented results which confirm that channel inclination considerably affects the electromagnetic fields at close distances. Lupo et al [7], in their analysis, treated each tortuous path as a single line radiator with an arbitrary slope and height. They were able to develop closed-form solutions for the electromagnetic fields by omitting any mathematical approximations.…”
Section: Literary Backgroundmentioning
confidence: 99%
“…This consequence stems from the fact that as time varying current elements begin to follow a more staggered path, each current segment will respond by altering its orientation, thus generating electric and magnetic fields that respond accordingly. This response will give rise to electric and magnetic fields which are spatially nonlinear with areas of low field intensities [7] as well as high field intensities.…”
Section: Literary Backgroundmentioning
confidence: 99%
“…(3), where c is the speed of light. The detailed calculations of the field can be found in [25] and [26]. …”
Section: Calculation Of Electric Fieldmentioning
confidence: 99%
“…For EM fields calculation, the analytical approach adopted in [25] has been implemented, needing a simple analytical representation of the single discharge current, travelling an arbitrarily oriented channel C as a function of time and space. In particular, it is possible to calculate the step response analytically by assuming that a unit step-function current travels along the channel:…”
Section: Calculation Of Electric Fieldmentioning
confidence: 99%
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