DocumentCode
30425
Title
Experimental Validation of the Reverberation Effect in Room Electromagnetics
Author
Steinbock, Gerhard ; Pedersen, Troels ; Fleury, Bernard Henri ; Wei Wang ; Raulefs, Ronald
Author_Institution
Dept. of Electron. Syst., Aalborg Univ., Aalborg, Denmark
Volume
63
Issue
5
fYear
2015
fDate
May-15
Firstpage
2041
Lastpage
2053
Abstract
The delay power spectrum is widely used in both communication and localization communities for characterizing the temporal dispersion of the radio channel. Experimental investigations of in-room radio environments indicate that the delay power spectrum exhibits an exponentially decaying tail. This tail can be characterized with Sabine´s or Eyring´s reverberation models, which were initially developed in acoustics. So far, these models were only fitted to data collected from radio measurements, but no thorough validation of their prediction ability in electromagnetics has been performed yet. This paper provides a contribution to fill this gap. We follow Sabine´s original experimental approach, which consists in comparing model predictions to experimental observations in a room, while varying its mean absorption coefficient and total room surface. We find that Eyring´s model provides a more accurate prediction of the parameters characterizing the decaying tail, such as the reverberation time, than Sabine´s model. We further use the reverberation models to predict the parameters of a recently proposed model of a distance-dependent delay power spectrum. This model enables us to predict the path loss, mean delay, and root mean square (rms) delay spread versus transmitter-receiver distance. We observe good agreement between predictions and experimental results.
Keywords
acoustic receivers; architectural acoustics; radio receivers; radio transmitters; reverberation; wireless channels; Eyring model; distance-dependent delay power spectrum; in-room radio environments; radio channel temporal dispersion; radio measurements; reverberation effect; rms delay spread; room electromagnetics; root mean square delay spread; transmitter-receiver distance; Absorption; Delays; Electromagnetics; Predictive models; Receivers; Reverberation; Transmitters; Indoor environments; radio propagation; reverberation;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2015.2423636
Filename
7087370
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