DocumentCode
2601289
Title
An analytical approach to probability of outage evaluation in gamma shadowed Nakagami-m and rice fading channel
Author
Hadzialic, Mesud ; Colo, Sulejman ; Sarajlic, Anida
Author_Institution
Sarajevo Univ., Sarajevo
fYear
2007
fDate
12-14 Sept. 2007
Firstpage
223
Lastpage
227
Abstract
In this paper a unified analytical approach to performance analyses in gamma shadowed Nakagami-m and Rice fading channel is presented. Instead of lognormal probability density function (PDF), gamma PDF is used for shadowing while multipath fading is represented with Nakagami-m and Rice distributions. A mathematical framework is developed for deriving key statistical parameters such as PDFs of signal to noise ratio (SNR) and signal to interference ratio (SIR) of several special scenarios in mobile channel as well as performance metrics including outage probability. In this way, one can conclude that presented results are reliable for lognormal shadowing spread <9dB (note that, the shadowing spread actually observed in macro-cells has a typical value that lies between 4 and 9 dB). The final results are remarkably simple and can serve as a quick way of assessing performance. In addition, presented analytical expressions are suitable for the asymptotic analyses, which is significant feature for both theoretical and practical aspect of theirs applications.
Keywords
Nakagami channels; cellular radio; probability; SIR; SNR; gamma probability density function; gamma shadowed Nakagami-m fading channel; gamma shadowed Rice fading channel; lognormal shadowing spread; mobile channel; multipath fading; outage probability; signal to interference ratio; signal to noise ratio; Closed-form solution; Fading; Interchannel interference; Measurement; Nakagami distribution; Performance analysis; Probability density function; Shadow mapping; Signal analysis; Signal to noise ratio; Nakagami fading; Rice fading; cochannel interference; gamma shadowing; lognormal shadowings; outage probability; probability density function; signal to noise ratio (SNR); signal-to-Interference Ratio (SIR);
fLanguage
English
Publisher
ieee
Conference_Titel
ELMAR, 2007
Conference_Location
Zadar
ISSN
1334-2630
Print_ISBN
978-953-7044-05-3
Type
conf
DOI
10.1109/ELMAR.2007.4418836
Filename
4418836
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