Title :
Evaluation of the Modeling of an EM Illumination on an Aircraft Cable Harness
Author :
Arianos, Sergio ; Francavilla, Matteo A. ; Righero, Marco ; Vipiana, Francesca ; Savi, P. ; Bertuol, Solange ; Ridel, M. ; Parmantier, Jean-Philippe ; Pisu, Luigi ; Bozzetti, Marco ; Vecchi, Giuseppe
Author_Institution :
Antenna & EMC Lab., Ist. Superiore Mario Boella, Turin, Italy
Abstract :
This paper describes the approach developed in order to model the electromagnetic response of a cable bundle, part of the electrical wiring interconnection system of a real aircraft, submitted to an external electromagnetic excitation. The aim of this study is to highlight the main challenges in the synthetic modeling and validation of a fully real setup, from the electromagnetic compatibility point of view. Both conducted and radiated excitations have been considered in the electromagnetic global model. The solution is obtained through a cooperative simulation approach involving one 3-D full-wave solver and a multiconductor transmission line solver. The results are compared with measurements and specific tools, such as feature selective validation and integrated error against log frequency, are used to assess the adequacy of the results.
Keywords :
avionics; electromagnetic compatibility; multiconductor transmission lines; wiring; 3D full-wave solver; EM illumination modeling evaluation; aircraft cable harness; cable bundle; conducted excitations; cooperative simulation approach; electrical wiring interconnection system; electromagnetic compatibility; electromagnetic global model; electromagnetic response; external electromagnetic excitation; feature selective validation; integrated error; log frequency; multiconductor transmission line solver; radiated excitations; synthetic modeling; Antenna measurements; Antennas; Cable shielding; Frequency measurement; Power cables; Scattering parameters; Wires; Electrical wiring interconnection system (EWIS); field-to-transmission-line (Field-to-TL); high intensity radiated field (HIRF); integral equations; method of moments (MoM); multiconductor transmission-line networks (MTLN);
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2014.2312752