Cristin-resultat-ID: 797427
Sist endret: 20. januar 2015, 14:03
NVI-rapporteringsår: 2010
Resultat
Vitenskapelig Kapittel/Artikkel/Konferanseartikkel
2010

Design and Simulation of Narrowband Indoor Radio Propagation Channels under LOS and NLOS Propagation Conditions

Bidragsytere:
  • Yuanyuan Ma og
  • Matthias Uwe Pätzold

Bok

Vehicular Technology Conference (VTC 2010-Spring), 2010 IEEE 71st : ProceedingsTaipei, Taiwan 16-19 May 2010
ISBN:
  • 978-1-4244-2519-8

Utgiver

IEEE Press
NVI-nivå 1

Serie

IEEE Vehicular Technology Conference (VTC) Proceedings
ISSN 1550-2252
NVI-nivå 1

Om resultatet

Vitenskapelig Kapittel/Artikkel/Konferanseartikkel
Publiseringsår: 2010
Hefte: 71
Antall sider: 7
ISBN:
  • 978-1-4244-2519-8

Klassifisering

Fagfelt (NPI)

Fagfelt: IKT
- Fagområde: Realfag og teknologi

Beskrivelse Beskrivelse

Tittel

Design and Simulation of Narrowband Indoor Radio Propagation Channels under LOS and NLOS Propagation Conditions

Sammendrag

This paper deals with the design and simulation of narrowband indoor propagation channels under line-of-sight (LOS) and non-LOS (NLOS) propagation conditions. We propose a reference channel model assuming that the scatterers are uniformly distributed in the two-dimensional (2D) horizontal space of a room. We derive analytical expressions for the probability density function (PDF) of the angle-of-arrival (AOA), the Doppler power spectral density (PSD), and the temporal autocorrelation function (ACF). We derive a sum-of-cisoids (SOC) channel simulator from the reference model. It is shown by numerical results that the statistical properties of the SOC channel simulator match very closely with the ones of the reference model. It turns out that our indoor reference model can be approximated by an SOC channel simulator with reduced realization expenditure. The resulting SOC channel simulator allows us to evaluate the performance of mobile communication systems in indoor environments by simulations. It is demonstrated that the generalized method of equal areas (GMEA) and the basic Riemann sum method (BRSM) are efficient parameter computation methods for the design of SOC indoor channel simulators

Bidragsytere

Yuanyuan Ma

  • Tilknyttet:
    Forfatter
    ved Fakultet for teknologi og realfag ved Universitetet i Agder

Matthias Uwe Pätzold

  • Tilknyttet:
    Forfatter
    ved Fakultet for teknologi og realfag ved Universitetet i Agder
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