DocumentCode :
3379147
Title :
Innovative pre-compliance test methodology using ambient cancellation and coherence detection techniques
Author :
Parhami, P. ; Marino, M. ; Watkins, Simon ; Nakauchi, E.
Author_Institution :
SARA Inc., Huntington Beach, CA, USA
Volume :
2
fYear :
1999
fDate :
1999
Firstpage :
1022
Abstract :
An innovative pre-compliance test methodology is introduced which enables accurate and rapid radiation emission testing in the presence of strong interfering ambient radiators. The methodology is based on a test technique which uses time and frequency synchronized multi-channel receiver systems to simultaneously record total fields at multiple locations. Advanced signal processing is used to cancel interfering ambient signals, accurately estimate the EUT signal strengths, and relate radiation emission signals to their origins. The presented test methodology virtually eliminates the need for expensive anechoic chambers for pre-compliance testing and EMI troubleshooting. As a result, low cost and automated pre-compliance testing can be effectively conducted in open area test sites (OATS) or inside fully operational plants throughout the product development cycle
Keywords :
automatic testing; conformance testing; electronic equipment testing; interference suppression; product development; radiofrequency interference; receivers; signal detection; signal processing; synchronisation; 307 to 317 MHz; 94.6 to 97.2 MHz; EUT signal strengths; OATS; UHF; VHF; advanced signal processing; ambient cancellation; coherence detection techniques; frequency synchronized multi-channel receiver; fully operational plants; interfering ambient signals; open area test sites; pre-compliance test methodology; product development cycle; radiation emission testing; strong interfering ambient radiators; time synchronized multi-channel receiver; total fields; Anechoic chambers; Electromagnetic interference; Frequency; Noise measurement; Open area test sites; Pollution measurement; Radiation detectors; Signal processing; System testing; Working environment noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility, 1999 IEEE International Symposium on
Conference_Location :
Seattle, WA
Print_ISBN :
0-7803-5057-X
Type :
conf
DOI :
10.1109/ISEMC.1999.810207
Filename :
810207
Link To Document :
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