DocumentCode
939214
Title
Higher Order Statistics for Lognormal Small-Scale Fading in Mobile Radio Channels
Author
Cotton, Simon L. ; Scanlon, William G.
Author_Institution
Queen´´s Univ. Belfast, Belfast
Volume
6
fYear
2007
fDate
6/29/1905 12:00:00 AM
Firstpage
540
Lastpage
543
Abstract
Lognormal small-scale fading has recently been reported in a number of indoor propagation studies. However, until now, no method of generating higher order statistics for this distribution in short-term fading channels has appeared in the literature. In this letter, we present a lognormal fading model which is based on the Bessel-derived autocorrelation function frequently used in Rayleigh-, Rice-, and Nakagami-fading simulators. In addition, we present exact, closed-form expressions for the level crossing rate and average fade duration (AFD) observed in lognormal small-scale fading channels for arbitrary and . The accepted ability of the lognormal distribution to approximate Nakagami second-order statistics for high values of the Nakagami- parameter is used in combination with simulated data, generated using a rank-matching approach, to validate the new model. Theoretical second-order distributions are also compared with empirical measurements obtained for mobile indoor on-body propagation channels. In all cases, the theoretical equations and test data are in good agreement.
Keywords
Bessel functions; Nakagami channels; Rayleigh channels; log normal distribution; mobile radio; statistics; Bessel-derived autocorrelation function; Nakagami-fading simulator; Rayleigh-fading simulator; Rice-fading simulator; average fade duration; higher order statistics; lognormal small-scale fading channel; mobile indoor on-body propagation channel; mobile radio channels; rank-matching approach; Closed-form solution; Cotton; Equations; Fading; Fluctuations; Higher order statistics; Humans; Land mobile radio; Nakagami distribution; Statistical distributions; Channel characterization; indoor propagation; level crossing rate; level crossing ratio; lognormal fading; small-scale fading;
fLanguage
English
Journal_Title
Antennas and Wireless Propagation Letters, IEEE
Publisher
ieee
ISSN
1536-1225
Type
jour
DOI
10.1109/LAWP.2007.909968
Filename
4357964
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