Title :
Investigating electromagnetic exposure of communication cables in reverberant chambers
Author :
Coates, Alyse R. ; Duffy, Alistair P. ; Hodge, Kenneth G. ; Willis, Arthur J.
Author_Institution :
De Montfort Univ., Leicester, UK
Abstract :
As distributed electronic systems become more complex, the electromagnetic compatibility (EMC) behaviour of the communication cables becomes more significant. Hence a range of test methods must be developed that will provide an adequate measure of the cable´s interference susceptibility. One such method is the ´mode stirred reverberation chamber method´, which offers a complementary technique to the more common and widespread surface transfer impedance measurement techniques. In the reverberation chamber method, the cable under test is subjected to a statistically uniform field produced by the rotation of a metallic ´mode stirrer´. This paper investigates the effects of the stirrer rotation on the surface currents on a cable using both modelling and measurements. The high level of agreement between the modelled and measured data supports the use of the reverberation chamber technique for screening performance measurements of communication cables.
Keywords :
cable shielding; cable testing; electromagnetic compatibility; electromagnetic interference; immunity testing; telecommunication cables; EMC; communication cables; distributed electronic systems; electromagnetic compatibility; electromagnetic exposure; interference susceptibility; metallic mode stirrer rotation; mode stirred reverberation chamber method; reverberant chambers; screening performance measurements; statistically uniform field; surface transfer impedance measurement techniques; test methods; Cable shielding; Communication cables; Electromagnetic compatibility; Electromagnetic interference; Electromagnetic measurements; Frequency; Impedance measurement; Reverberation chamber; Surface impedance; Testing;
Conference_Titel :
Electromagnetic Compatibility, 2002. EMC 2002. IEEE International Symposium on
Conference_Location :
Minneapolis, MN, USA
Print_ISBN :
0-7803-7264-6
DOI :
10.1109/ISEMC.2002.1032480