DocumentCode :
2146404
Title :
Experimental verification of correlation algorithm between FAC and open area test site/SAC
Author :
Kwon, Jong-Hwa ; Choi, Hyung-Do
Author_Institution :
Radio & Broadcasting Lab., ETRI, Daejeon, South Korea
Volume :
2
fYear :
2003
fDate :
18-22 Aug. 2003
Firstpage :
910
Abstract :
The main purpose of Fully Anechoic Chamber (FAC) as an alternative facility for EMC compliance testing is to accurately measure the radiated emission generated from equipment-under-test (EUT). The Open Area Test Site (OATS) is the standard test facility for radiated emission measurement, thus the FAC data have to be correlated to the OATS results. In this paper, it is statistically verified the newly proposed correlation algorithm between FAC and test facilities with ground plane such as OATS, semi-anechoic chamber (SAC) in order to use a FAC as an alternative facility for EMC compliance test. The algorithm is based on modeling of EUT as an equivalent set of multipoles. A sequence of E field measurements at FAC is then used to determine the equivalent dipole moments and relative phases for EUT. The dipole model then allows one to simulate the radiated emission from EUT over a ground screen. Thus, emission measurements over an OATS as called for by various standards may be simulated. This paper reviews the basics of the multipole model as it relates to FAC, the E field measurement scheme at FAC, and presents the results of EMI measurements at both FAC and SAC. The radiated emission test using the proposed algorithm requires fifteen E field values measured at nine positions around an arbitrary EUT located within FAC. Radiation from the reference radiator has been tested in order to statistically verify the proposed correlation algorithm between a FAC and the test facilities with ground plane.
Keywords :
anechoic chambers (electromagnetic); electromagnetic compatibility; magnetic field measurement; open area test sites; E field measurements; EMC compliance testing; EMI; EUT modeling; FAC; OATS; SAC; correlation algorithm; dipole model; electromagnetic compatibility; electromagnetic interference; equipment under test; equivalent dipole moments; fully anechoic chamber; ground plane; ground screen; open area test site; radiated emission measurement; reference radiator; semi anechoic chamber; standard test facility; Anechoic chambers; Area measurement; Electromagnetic compatibility; Electromagnetic interference; Measurement standards; Open area test sites; Phase measurement; Position measurement; Test facilities; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility, 2003 IEEE International Symposium on
Print_ISBN :
0-7803-7835-0
Type :
conf
DOI :
10.1109/ISEMC.2003.1236730
Filename :
1236730
Link To Document :
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