4.6 Review

Electromagnetic Methods of Lightning Detection

期刊

SURVEYS IN GEOPHYSICS
卷 34, 期 6, 页码 731-753

出版社

SPRINGER
DOI: 10.1007/s10712-013-9251-1

关键词

Lightning electromagnetic field signatures; Lightning locating systems; Detection efficiency; Percentage of misclassified events; Location accuracy; Peak current estimation errors

资金

  1. European Science Foundation (ESF)
  2. NSF [ATM-0852869]
  3. DARPA [HR0011-10-1-0061]
  4. GRF [14.B25.31.0023]
  5. Directorate For Geosciences
  6. Div Atmospheric & Geospace Sciences [0852869] Funding Source: National Science Foundation

向作者/读者索取更多资源

Both cloud-to-ground and cloud lightning discharges involve a number of processes that produce electromagnetic field signatures in different regions of the spectrum. Salient characteristics of measured wideband electric and magnetic fields generated by various lightning processes at distances ranging from tens to a few hundreds of kilometers (when at least the initial part of the signal is essentially radiation while being not influenced by ionospheric reflections) are reviewed. An overview of the various lightning locating techniques, including magnetic direction finding, time-of-arrival technique, and interferometry, is given. Lightning location on global scale, when radio-frequency electromagnetic signals are dominated by ionospheric reflections, is also considered. Lightning locating system performance characteristics, including flash and stroke detection efficiencies, percentage of misclassified events, location accuracy, and peak current estimation errors, are discussed. Both cloud and cloud-to-ground flashes are considered. Representative examples of modern lightning locating systems are reviewed. Besides general characterization of each system, the available information on its performance characteristics is given with emphasis on those based on formal ground-truth studies published in the peer-reviewed literature.

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