DocumentCode :
2630735
Title :
Field characterisation of an aircraft sized TEM cell
Author :
Walters, Andrew ; Doan, Tan ; Denton, Craig
Author_Institution :
Air Oper. Div., Defence Sci. & Technol. Organ., Edinburgh, SA, Australia
fYear :
2009
fDate :
Aug. 16 2009-Sept. 18 2009
Firstpage :
47
Lastpage :
52
Abstract :
DSTO conducts research into novel approaches for aircraft HIRF (High Intensity Radiated Fields) testing with recent work focused on testing at frequencies below 30 MHz. A 30 m × 11 m × 6 m reverberation chamber, developed as part of our research program, has been modified to incorporate a TEM (Transverse electromagnetic) mode of operation, with a 20 m × 6 m septum as the major component. The ultimate aim is to provide continuity in the available testing frequencies between the TEM and reverberation modes of operation. A validated computational model of the system has been used to investigate the uniformity of the electric field and the power requirements as a function of frequency. Results indicate that below 15 MHz, where pure TEM modes of operation are achievable, field variations of no more than 6 dB are observed over the volume occupied by a representative EUT (equipment under test). In addition, the power required to achieve a field strength of 200 V/m is of the order of 20 kW. Also discussed in this paper, is that at resonant frequencies within the chamber, the situation becomes uncertain and requires further investigation.
Keywords :
TEM cells; test equipment; aircraft sized TEM cell; equipment under test; field characterisation; power 20 kW; resonant frequencies; transverse electromagnetic mode; Aerospace electronics; Air safety; Aircraft; Electromagnetic radiation; Electronic equipment testing; Frequency; Radiation safety; Reverberation; System testing; TEM cells;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility Symposium Adelaide, 2009.
Conference_Location :
Adelaide, SA
Print_ISBN :
978-1-4244-4674-2
Electronic_ISBN :
978-1-4244-4675-9
Type :
conf
DOI :
10.1109/EMCSA.2009.5349777
Filename :
5349777
Link To Document :
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