DocumentCode :
127832
Title :
Evaluation of effects on electromagnetic field characteristics inside aircraft due to phenol internal structures using a reverberation chamber
Author :
Futatsumori, Shunichi ; Morioka, Kazuyuki ; Kohmura, Akiko ; Yonemoto, Naruto ; Shirafune, Masami ; Hikage, Takashi ; Nojima, Toshio
Author_Institution :
Surveillance & Commun. Dept, Electron. Navig. Res. Inst., Chofu, Japan
fYear :
2014
fDate :
1-4 Sept. 2014
Firstpage :
313
Lastpage :
317
Abstract :
Effects on electromagnetic field (EMF) characteristics inside aircraft due to internal structures, such as phenol internal walls are experimentally investigated using a reverberation chamber. This is aiming to improve the accuracy of the numerical analysis method for the electromagnetic compatibility estimation of the Boeing 777 class large aircraft based on finite-difference time-domain (FDTD) technique. Firstly, the FDTD analysis results of B777-200ER aircraft are compared with that of measured results. The dependencies of material constants of the aircraft model are briefly discussed. Secondly, the EMF loss due to the phenol walls is measured quantitatively using the reverberation chamber. The performance of the chamber is evaluated by the statistical analysis. The field uniformity evaluated by the measured electric field (E-field) strength is less than 3 dB between 500 MHz and 6 GHz. Next, the cumulative distribution function of the measured E-field strength is in good agreement with the theoretical Rayleigh distribution. Finally, the measured quality factor, which is reduced by 20 % at 2 GHz and 25 % at 5 GHz, confirms the loss of EMF due to the phenol walls.
Keywords :
Q-factor; avionics; electromagnetic compatibility; finite difference time-domain analysis; reverberation chambers; statistical analysis; B777-200ER aircraft; Boeing 777 class large aircraft; Rayleigh distribution; aircraft model; electric field; electromagnetic compatibility estimation; electromagnetic field characteristics effects; finite-difference time-domain; frequency 500 MHz to 6 GHz; phenol internal structures; quality factor; reverberation chamber; statistical analysis; Aircraft; Aluminum; Antenna measurements; Materials; Q-factor; Reverberation chambers; Standards; aircraft; electromagnetic field; numerical analysis; phenol; quality factor; reverberation chamber;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility (EMC Europe), 2014 International Symposium on
Conference_Location :
Gothenburg
Type :
conf
DOI :
10.1109/EMCEurope.2014.6930923
Filename :
6930923
Link To Document :
بازگشت