DocumentCode :
1498500
Title :
An adaptive geometry-based stochastic model for non-isotropic MIMO mobile-to-mobile channels
Author :
Cheng, Xiang ; Wang, Cheng-Xiang ; Laurenson, David I. ; Salous, Sana ; Vasilakos, Athanasios V.
Author_Institution :
Joint Res. Inst. for Signal & Image Process., Heriot-Watt Univ., Edinburgh, UK
Volume :
8
Issue :
9
fYear :
2009
fDate :
9/1/2009 12:00:00 AM
Firstpage :
4824
Lastpage :
4835
Abstract :
In this paper, a generic and adaptive geometrybased stochastic model (GBSM) is proposed for non-isotropic multiple-input multiple-output (MIMO) mobile-to-mobile (M2M) Ricean fading channels. The proposed model employs a combined two-ring model and ellipse model, where the received signal is constructed as a sum of the line-of-sight, single-, and doublebounced rays with different energies. This makes the model sufficiently generic and adaptable to a variety of M2M scenarios (macro-, micro-, and pico-cells). More importantly, our model is the first GBSM that has the ability to study the impact of the vehicular traffic density on channel characteristics. From the proposed model, the space-time-frequency correlation function and the corresponding space-Doppler-frequency power spectral density (PSD) of any two sub-channels are derived for a non-isotropic scattering environment. Based on the detailed investigation of correlations and PSDs, some interesting observations and useful conclusions are obtained. These observations and conclusions can be considered as a guidance for setting important parameters of our model appropriately and building up more purposeful measurement campaigns in the future. Finally, close agreement is achieved between the theoretical results and measured data, demonstrating the utility of the proposed model.
Keywords :
MIMO communication; fading channels; geometry; mobile communication; stochastic processes; Ricean fading channels; adaptive geometry-based stochastic model; mobile-to-mobile channels; non-isotropic MIMO; space-Doppler-frequency power spectral density; Antennas and propagation; Image processing; Intelligent transportation systems; Land mobile radio cellular systems; MIMO; Mobile communication; Scattering; Signal processing; Solid modeling; Stochastic processes; MIMO; Mobile-to-mobile channels; non-isotropic scattering environments; space-Doppler-frequency power spectrum density; space-time-frequency correlation function;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2009.081560
Filename :
5285204
Link To Document :
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