DocumentCode :
2606539
Title :
Impulsive noise modeling with stable distributions in fading environments
Author :
Ilow, Jacek ; Hatzinakos, Dimitris
Author_Institution :
Surface Radar Sect., Defence Res. Establ. Ottawa, Ont., Canada
fYear :
1996
fDate :
24-26 Jun 1996
Firstpage :
140
Lastpage :
143
Abstract :
The paper introduces a statistical and physically based mechanism giving rise to α-stable noise models. We show that the additive interference which is present in many environments can be modeled as symmetric α-stable by assuming: (i) independent signaling (effects) from a large number of interferers of the same type (modulation); (ii) Poisson distribution of interferers in space; and (iii) inverse power attenuation of the signal strength with distance. Our approach to α-stable noise modeling is based on the LePage series representation as opposed to the influence function approaches. The formulas derived are used to predict noise statistics in environments with lognormal shadowing and Rayleigh fading. The LePage series framework allows us to investigate practical constraints in the system model adopted, such as the finite number of interferers and the nonhomogeneous Poisson fields of the interferers. We characterize the interference for multiple access communication systems in which the interferers are assumed to be Poisson-distributed in the plane
Keywords :
Poisson distribution; Rayleigh channels; fading; log normal distribution; modulation; multi-access systems; noise; radiofrequency interference; radiowave propagation; series (mathematics); α-stable noise models; LePage series representation; Poisson distribution; Rayleigh fading; additive interference; distance; fading environments; impulsive noise modeling; independent signaling; inverse power attenuation; lognormal shadowing; modulation; multiple access communication systems; noise statistics prediction; nonhomogeneous Poisson fields; physically based mechanism; propagation laws; signal strength; stable distributions; statistical based mechanism; system model; Additives; Attenuation; Fading; Frequency shift keying; Gaussian distribution; Gaussian noise; Power system modeling; Radar; Underwater communication; Working environment noise;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Statistical Signal and Array Processing, 1996. Proceedings., 8th IEEE Signal Processing Workshop on (Cat. No.96TB10004
Conference_Location :
Corfu
Print_ISBN :
0-8186-7576-4
Type :
conf
DOI :
10.1109/SSAP.1996.534838
Filename :
534838
Link To Document :
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