DocumentCode :
1110787
Title :
Canonical and Quasi-Canonical Probability Models of Class a Interference
Author :
Middleton, David
Author_Institution :
127 E 91st St., New York, NY 10028 (212) 831-8565
Issue :
2
fYear :
1983
fDate :
5/1/1983 12:00:00 AM
Firstpage :
76
Lastpage :
106
Abstract :
The earlier work of the author on Class A electromagnetic interference (EMI) (RF noise) models is further developed and extended to include "approximately canonical" and "quasi-canonical" cases, in addition to the earlier strictly canonical forms. Along with a general development of the first-order probability models of Class A noise here, which now include both scenario-implicit and scenario-explicit formulations, the following new and general results are obtained: 1) the demonstration that the Rayleigh pdf of received envelopes is the necessary and sufficient condition for the strictly canonical Class A model; 2) use of the EMI scenario in calculating the parameters of the model; 3) methods and conditions for determining approximately canonical cases; 4) specific exact characteristic functions (CF), pdf\´s, and APD\´s for some basic single-random-source scenarios; 5) general quasi-canonical forms and specific examples, showing acceptable agreement with corresponding results for closely related EMI scenarios determined by simulation; as well as 6) a general formulation of EMI first-order statistics for arbitrary (including small) numbers of potentially interfering sources. Another principal overill result is extended qualitative and quantitative insights into the Class A EMI model as a whole. Many special results are included, in addition.
Keywords :
Apertures; Electromagnetic interference; Electromagnetic modeling; Probability distribution; Radio frequency; Radio spectrum management; Radiofrequency interference; Samarium; Statistics; Sufficient conditions; Class A interference; EMI scenario; Nongaussian noise; canonical; first-order probabilities and probability densities; quasi-canonical models; single-source pdf´s; statistical-physical models of EMI; tractable approximations;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.1983.304151
Filename :
4091622
Link To Document :
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