DocumentCode :
9974
Title :
Using a Design-of-Experiment Technique to Consider the Wire Harness Load Impedances in the FDTD Model of an Aircraft Struck by Lightning
Author :
Perrin, Eric ; Guiffaut, Christophe ; Reineix, Alain ; Tristant, Fabrice
Author_Institution :
Cisteme Technol. Transfer Center, Limoges, France
Volume :
55
Issue :
4
fYear :
2013
fDate :
Aug. 2013
Firstpage :
747
Lastpage :
753
Abstract :
Nowadays, with the increasing use of composite materials, lightning indirect effects on aircrafts are an important problem of interest. Currents and voltages induced by the lightning strike can perturb the equipment working. The numerical tool developed in previous works allows one to estimate the current coupling on wires involved by the lightning strike. The induced disturbances are entirely computed using the finite-difference time-domain method. In this paper, an improvement of the numerical model is detailed in order to take into account more efficiently the load impedances of the wire harness in a critical zone of the aircraft. The application of a design-of-experiment approach is proposed to consider the uncertainty about the load impedances values. This approach permits us both to study the influence of the load impedances values on the currents and to define a variation domain of the induced currents´ waveforms. The numerical model aims at assisting the aircraft manufacturer during the aircraft design and more particularly during the certification process.
Keywords :
aircraft manufacture; avionics; design for manufacture; design of experiments; finite difference time-domain analysis; lightning protection; numerical analysis; FDTD model; aircraft design; aircraft lightning strike; aircraft manufacturer; composite materials; current coupling; design-of-experiment technique; finite-difference time-domain method; load induced current waveforms; numerical model; wire harness load impedance; Aircraft; Atmospheric modeling; Engines; Finite difference methods; Lightning; Time domain analysis; Wires; Aircraft; design of experiments (DOE); finite-difference time-domain (FDTD) method; lightning; load impedances;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2012.2232296
Filename :
6410411
Link To Document :
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