• DocumentCode
    2705169
  • Title

    The application of the finite-difference time-domain method to EMC analysis

  • Author

    Gedney, Stephen D.

  • Author_Institution
    Dept. of Electr. Eng., Kentucky Univ., Lexington, KY, USA
  • fYear
    1996
  • fDate
    19-23 Aug 1996
  • Firstpage
    117
  • Lastpage
    121
  • Abstract
    The paper provides a tutorial of the FDTD method and its application to the full-wave analysis of practical EMC problems. The FDTD method is a versatile technique and a powerful tool that can allow for the efficient and accurate simulation of electromagnetic interaction and radiation for EMC analysis. The paper begins with an introduction to the FDTD method based on the traditional Yee-algorithm. For the analysis of radiating structures, various absorbing boundary conditions, including the novel perfectly matched layer (PML) absorbing boundary condition, and their relative performances are described. Techniques of computing radiated fields from the time-dependent fields are also be discussed. Included in this discussion are the limitations of modeling complex structures using regular lattice grids, as well as the benefits of advanced FDTD algorithms that utilize irregular and unstructured grids. Acceleration techniques and the efficient implementation of the FDTD method on high performance computers are also of concern. Finally, a number of practical EMC problems analyzed using the FDTD method are presented
  • Keywords
    digital simulation; electrical engineering; electrical engineering computing; electromagnetic compatibility; electromagnetic fields; electromagnetic wave absorption; finite difference time-domain analysis; simulation; EMC analysis; EMC problems; FDTD algorithms; FDTD method; Yee-algorithm; absorbing boundary conditions; acceleration techniques; complex structures modeling; electromagnetic interaction simulation; electromagnetic radiation simulation; finite-difference time-domain method; full-wave analysis; high performance computers; irregular grids; perfectly matched layer; radiated fields; radiating structures; regular lattice grids; time-dependent fields; tutorial; unstructured grids; Analytical models; Boundary conditions; Electromagnetic analysis; Electromagnetic compatibility; Electromagnetic radiation; Finite difference methods; Lattices; Perfectly matched layers; Performance analysis; Time domain analysis;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electromagnetic Compatibility, 1996. Symposium Record. IEEE 1996 International Symposium on
  • Conference_Location
    Santa Clara, CA
  • Print_ISBN
    0-7803-3207-5
  • Type

    conf

  • DOI
    10.1109/ISEMC.1996.561212
  • Filename
    561212