DocumentCode
3494180
Title
Uncertainty in radio frequency emission measurements due to the effects of electromagnetic ambient
Author
Sakthivel, K.N. ; Das, Sisir K. ; Kini, K.R.
Author_Institution
Centre for Electromagn., SAMEER, Chennai, India
Volume
2
fYear
2001
fDate
2001
Firstpage
985
Abstract
This paper describes the uncertainty in radio frequency emission (RFE) measurements due to the effects of time varying behaviour of electromagnetic ambient (EMA) noise spectrum prevailing in the measuring environment. Reception of unwanted EMA signals (sometimes, unpredictable before starting the measurements), at the time of RFE measurements, interfere with the measuring RFE signals. This results in nonrepeatability in the measurement results. It is shown that if the noise emitted by an equipment under test (EUT) is equal to or more than worst case EMA level allowable as per international EMC standards (i.e. 50% of specified limit) and when this is added with EMA, the measured noise level is increased significantly. This is explained using experimental results. An allowable EMA margin of 10 dB is suggested instead of 6 dB, to overcome the problems due to EMA
Keywords
electric noise measurement; electromagnetic compatibility; measurement uncertainty; radiofrequency interference; OATS; electromagnetic ambient effects; electromagnetic ambient noise spectrum; equipment under test noise emission; international EMC standards; measuring environment; radio frequency emission measurements; radio frequency emission measurements uncertainty; time varying behaviour; unwanted EMA signals; Electromagnetic compatibility; Electromagnetic interference; Electromagnetic measurements; Frequency measurement; Noise level; Noise measurement; Radio frequency; Testing; Time measurement; Working environment noise;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetic Compatibility, 2001. EMC. 2001 IEEE International Symposium on
Conference_Location
Montreal, Que.
Print_ISBN
0-7803-6569-0
Type
conf
DOI
10.1109/ISEMC.2001.950528
Filename
950528
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