DocumentCode
2267660
Title
Channel model implementation for evaluation of location services
Author
Thomas, N.J. ; Cruickshank, D.G.M. ; Laurenson, D.I.
Author_Institution
Edinburgh Univ., UK
fYear
2000
fDate
2000
Firstpage
446
Lastpage
450
Abstract
Simulation and evaluation of location services presents a number of new problems in the area of stochastic channel modelling which conventional models do not account for. Such problems are modelling of line of sight (LOS) probabilities, LOS to non-line of sight (NLOS) power ratios, NLOS excess propagation time delay, out of cell radio propagation/coverage, and spatial correlation factors. A two level channel model which addresses these problems is introduced. Local level effects, based on the CODIT propagation model, and cell level effects are incorporated. LOS probabilities and shadowing effects are treated independently at each level. Several scenarios are developed to model different levels of radiowave propagation between cells, corresponding to flat and hilly terrain. Simulation results for the two proposed idle period downlink (IDPL) time difference of arrival (TDOA) techniques for UMTS are presented
Keywords
log normal distribution; CODIT propagation model; LOS probabilities; LOS to nonline of sight power ratios; NLOS excess propagation time delay; TDOA; UMTS; cell level effects; cellular radio; channel model implementation; flat terrain; hilly terrain; idle period downlink; line of sight probabilities; local level effects; location services evaluation; location services simulation; log normal distribution; out of cell radio propagation/coverage; path loss model; radiowave propagation; shadowing effects; simulation results; spatial correlation factors; stochastic channel modelling; time difference of arrival; two level channel model;
fLanguage
English
Publisher
iet
Conference_Titel
3G Mobile Communication Technologies, 2000. First International Conference on (Conf. Publ. No. 471)
Conference_Location
London
Print_ISBN
0-85296-726-8
Type
conf
DOI
10.1049/cp:20000089
Filename
858328
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