DocumentCode
1437472
Title
Using the root-mean-square detector for weighting of disturbances according to its effect on digital communication services
Author
Stenumgaard, Peter F.
Author_Institution
Dept. of Commun. Syst., Swedish Defence Res. Establ., Linkoping, Sweden
Volume
42
Issue
4
fYear
2000
fDate
11/1/2000 12:00:00 AM
Firstpage
368
Lastpage
375
Abstract
The issue of finding a new electromagnetic interference (EMI) measurement detector with proper weighting properties for the effect of disturbances on digital communication services is of great importance for the development of future emission standards. We investigate the root-mean-square (RMS) detector as a possible candidate for future emission measurements. This investigation is done for type of disturbances typical for information technology (IT) equipment, i.e., a repetitive pulse waveform. We show that the tolerated RMS value of the disturbance level related to a certain bit-error probability is in practice independent of the pulse width of a repetitive pulsed disturbance signal. Furthermore, the variation of this tolerated RMS value with the pulse-repetition frequency of the disturbance can easily be modeled. These properties make it possible to express the maximum allowed disturbance level in terms of the output from the RMS detector. The conclusion is that the RMS detector is a promising candidate for future emission standards where the disturbance effect on digital communication services is considered
Keywords
digital radio; electromagnetic interference; information technology; measurement standards; signal detection; telecommunication equipment testing; telecommunication standards; EMI measurement detector; IT equipment; bit-error probability; digital communication services; digital radio systems; disturbance weighting; electromagnetic interference; emission standards; information technology equipment; maximum allowed disturbance level; pulse width; pulse-repetition frequency; repetitive pulse waveform; repetitive pulsed disturbance signal; root-mean-square detector; weighting properties; Communication standards; Detectors; Digital communication; Electromagnetic interference; Electromagnetic measurements; Frequency; Information technology; Measurement standards; Space vector pulse width modulation; Standards development;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/15.902306
Filename
902306
Link To Document