Melecon 2010 - 2010 15th IEEE Mediterranean Electrotechnical Conference 2010
DOI: 10.1109/melcon.2010.5475991
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Modeling electromagnetic interference generated by a WLAN system onboard commercial aircraft

Abstract: This work forms part of the project HIRF SE which is financially supported under the European Union 7th Framework Programme (FP7). The authors are solely responsible for the contents of the paper which does not represent the opinion of the European Commission.The growing demand for the utilization of personal electronic communication devices onboard commercial aircraft necessitates the assurance of safety by airline operators and regulators. This implies that the potential risks posed by the deployment of wire… Show more

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Cited by 9 publications
(7 citation statements)
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“…Calculation of the EMI field incident on the outer fuselage structure was performed by the implementation of an area oriented design based on ray launching technique, derived from previous developments performed for interior propagation analysis [6]. This approach encompassed a computational complexity which is quasi independent on the number of observation points, and linearly dependent on the number of rays considered [14].…”
Section: Ray-tracing Frameworkmentioning
confidence: 99%
See 1 more Smart Citation
“…Calculation of the EMI field incident on the outer fuselage structure was performed by the implementation of an area oriented design based on ray launching technique, derived from previous developments performed for interior propagation analysis [6]. This approach encompassed a computational complexity which is quasi independent on the number of observation points, and linearly dependent on the number of rays considered [14].…”
Section: Ray-tracing Frameworkmentioning
confidence: 99%
“…This electronic dependence implies that flight safety can only be guaranteed for the unimpeded operation of these systems [5]. The need for prevention of integrity compromisation from electromagnetic interference (EMI) has lately attracted much attention from the aeronautic industry and research community alike [6]. Much effort has been done so far to study and predict the effects induced by onboard personal wireless electronic devices (PEDs) by means of simulation and measurement campaigns [7 -10].…”
Section: Introductionmentioning
confidence: 99%
“…Once the latter impinges on a boundary composed of a discontinuity in media, Fresnel's equations are employed together with the complex properties of each material so as to compute the ratio of reflected power and that transmitted through the new medium. Since materials are composed of irregular surfaces, scattering effects to account for the specular direction of propagation are also implemented to enhance the model's accuracy [9]. A total of 200000 rays are simulated in the scenario through the several propagation mechanisms until each ray reaches a signal strength of -150dBm, where it is then negligible for the vectorial computation of the total EMI.…”
Section: Propagation Modelmentioning
confidence: 99%
“…In other sectors such as shipbuilding can also find studies (Nan et al, 2008) for ray launching from big antennas located outside of huge ships (generally warships), where their operation and possible improvement is checked. In the particular case of aerospace transportation, results have been reported using the 3D ray-tracing algorithms for the study of the radiopropagation inside airplanes, from the generation of 3D aircraft models (De Raffaele et al, 2010;Felbecker, 2008a,b;Sai Ananthanarayanan et al, 2011), prediction of near field values with the aid of SBR techniques or measurements within the inside of a conventional aircraft (Peter et al, 2007).…”
Section: Introductionmentioning
confidence: 99%