DocumentCode
1420276
Title
Statistical modeling of RMS-delay spread under multipath fading conditions in local areas
Author
Dimitrakopoulos, George A. ; Capsalis, Christos N.
Author_Institution
Nat. Tech. Univ. of Athens, Greece
Volume
49
Issue
5
fYear
2000
fDate
9/1/2000 12:00:00 AM
Firstpage
1522
Lastpage
1528
Abstract
Two statistical models for the parameter of local root mean square (RMS) delay spread taking into account multipath fading characteristics of the received paths´ amplitudes are presented. The models have been developed under the assumption that only two “paths” exist in the radio channel. A rather specialized definition for the term “path” is used, which is explained in the introduction. The aim is the description of RMS delay spread when the transceiver moves in a local area and experiences multipath fading. For this reason, the amplitudes of the two paths have been assumed to follow both the Rayleigh distribution at the first model and the Rayleigh and Rice distributions, respectively, at the second model. The time difference between the arrival of the two paths has been assumed to follow the uniform distribution for both models. In order to examine the validity of the models, measurements have been conducted and experimental results have been compared with the theoretical ones. Moreover, measurements from the literature have been obtained for additional confirmation of the models
Keywords
Rayleigh channels; Rician channels; UHF radio propagation; delays; multipath channels; statistical analysis; 900 MHz; LOS; RMS-delay spread; RaRa model; Rayleigh distribution; Rice distribution; UHF; arrival time difference; experimental results; local areas; measurements; multipath fading conditions; radio channel; received paths amplitudes; root mean square delay spread; statistical modeling; statistical models; transceiver; uniform distribution; Delay effects; Fading; Intersymbol interference; Large-scale systems; Pulse measurements; Radio transmitters; Rayleigh channels; Receivers; Root mean square; Time measurement;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/25.892535
Filename
892535
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