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A Hermite interpolation model for reconstructing the frequency spectrum of the lightning horizontal electric field

  • Boyuan Zhang [1] ; Jun Zou [1] ; Jaebok Lee [2] ; Mun-no Ju [2]
    1. [1] Tsinghua University

      Tsinghua University

      China

    2. [2] Korea Electrotechnology Research Institute

      Korea Electrotechnology Research Institute

      Corea del Sur

  • Localización: Compel: International journal for computation and mathematics in electrical and electronic engineering, ISSN 0332-1649, Vol. 35, Nº 3, 2016, págs. 1107-1122
  • Idioma: inglés
  • Enlaces
  • Resumen
    • Purpose – The purpose of this paper is to propose a fast algorithm to calculate the lightning horizontal electric field over a lossy ground.

      Design/methodology/approach – The lightning horizontal electric field in frequency domain is approximated by a number of piecewise cubic polynomial functions by using the proposed adaptive Hermite strategy. To utilize the Hermite strategy, the frequency domain spectrum and its derivative with respect to frequency are required. The integral kernel of the derivative appears singular along the real axis. To overcome this singularity and accelerate the calculation, a new integration path is proposed. With the help of the Hermite interpolation model and the new path, the lightning horizontal electric field in time domain can be obtained rapidly.

      Findings – The singularity problem has been overcome with the new integration path and the adaptive Hermite strategy proposed in this paper is at least 50 times faster than the one using the equally spaced sampling approach.

      Originality/value – The adaptive Hermite approach can be a good candidate for fitting a wideband frequency domain response and the revised new integration path can be utilized when the calculation of the generalized Sommerfeld integral or its derivative with respect to frequency is involved.


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